Skip to main content
Top
Published in: Malaria Journal 1/2020

01-12-2020 | Malaria | Review

The fabric of life: what if mosquito nets were durable and widely available but insecticide-free?

Author: Fredros Okumu

Published in: Malaria Journal | Issue 1/2020

Login to get access

Abstract

Background

Bed nets are the commonest malaria prevention tool and arguably the most cost-effective. Their efficacy is because they prevent mosquito bites (a function of physical durability and integrity), and kill mosquitoes (a function of chemical content and mosquito susceptibility). This essay follows the story of bed nets, insecticides and malaria control, and asks whether the nets must always have insecticides.

Methods

Key attributes of untreated or pyrethroid-treated nets are examined alongside observations of their entomological and epidemiological impacts. Arguments for and against adding insecticides to nets are analysed in contexts of pyrethroid resistance, personal-versus-communal protection, outdoor-biting, need for local production and global health policies.

Findings

Widespread resistance in African malaria vectors has greatly weakened the historical mass mosquitocidal effects of insecticide-treated nets (ITNs), which previously contributed communal benefits to users and non-users. Yet ITNs still achieve substantial epidemiological impact, suggesting that physical integrity, consistent use and population-level coverage are increasingly more important than mosquitocidal properties. Pyrethroid-treatment remains desirable where vectors are sufficiently susceptible, but is no longer universally necessary and should be re-examined alongside other attributes, e.g. durability, coverage, acceptability and access. New ITNs with multiple actives or synergists could provide temporary relief in some settings, but their performance, higher costs, and drawn-out innovation timelines do not justify singular emphasis on insecticides. Similarly, sub-lethal insecticides may remain marginally-impactful by reducing survival of older mosquitoes and disrupting parasite development inside the mosquitoes, but such effects vanish under strong resistance.

Conclusions

The public health value of nets is increasingly driven by bite prevention, and decreasingly by lethality to mosquitoes. For context-appropriate solutions, it is necessary to acknowledge and evaluate the potential and cost-effectiveness of durable untreated nets across different settings. Though ~ 90% of malaria burden occurs in Africa, most World Health Organization-prequalified nets are manufactured outside Africa, since many local manufacturers lack capacity to produce the recommended insecticidal nets at competitive scale and pricing. By relaxing conditions for insecticides on nets, it is conceivable that non-insecticidal but durable, and possibly bio-degradable nets, could be readily manufactured locally. This essay aims not to discredit ITNs, but to illustrate how singular focus on insecticides can hinder innovation and sustainability.
Literature
1.
go back to reference Lindsay SW, Gibson ME. Bednets revisited: old idea, new angle. Parasitol Today. 1988;4:270–2.PubMed Lindsay SW, Gibson ME. Bednets revisited: old idea, new angle. Parasitol Today. 1988;4:270–2.PubMed
2.
go back to reference Curtis C, Lines JD, Carnevale P, Robert V, Boudin C, Halna JM, et al. Impregnated bednets and curtains against malaria mosquitoes. In: Curtis C, editor. Appropriate technology in vector control. Abingdon: Taylor & Francis Group; 1990. p. 5–46. Curtis C, Lines JD, Carnevale P, Robert V, Boudin C, Halna JM, et al. Impregnated bednets and curtains against malaria mosquitoes. In: Curtis C, editor. Appropriate technology in vector control. Abingdon: Taylor & Francis Group; 1990. p. 5–46.
3.
go back to reference Jamet HP. Insecticide treated bednets for malaria control. Outlooks Pest Manag. 2016;27:124–8. Jamet HP. Insecticide treated bednets for malaria control. Outlooks Pest Manag. 2016;27:124–8.
4.
go back to reference Bhatt S, Cameron E, Bisanzio D, Mappin B, Dalrymple U, et al. The effect of malaria control on Plasmodium falciparum in Africa between 2000 and 2015. Nature. 2015;526:207–11.PubMedPubMedCentral Bhatt S, Cameron E, Bisanzio D, Mappin B, Dalrymple U, et al. The effect of malaria control on Plasmodium falciparum in Africa between 2000 and 2015. Nature. 2015;526:207–11.PubMedPubMedCentral
5.
go back to reference Ross R. Memoirs: with a full account of the great malaria problem and its solution. New York: EP Dutton & Company; 1923. Ross R. Memoirs: with a full account of the great malaria problem and its solution. New York: EP Dutton & Company; 1923.
6.
go back to reference Ross R. On some peculiar pigmented cells found in two mosquitoes fed on malarial blood. BMJ. 1929;2:1786–8. Ross R. On some peculiar pigmented cells found in two mosquitoes fed on malarial blood. BMJ. 1929;2:1786–8.
7.
go back to reference Lindblom G. Mosquito nets etc. in Africa. J Anthropol. 1948;13:124–40. Lindblom G. Mosquito nets etc. in Africa. J Anthropol. 1948;13:124–40.
8.
go back to reference Wilson AL, Courtenay O, Kelly-Hope LA, Scott TW, Takken W, et al. The importance of vector control for the control and elimination of vector-borne diseases. PLoS Negl Trop Dis. 2020;14:e0007831.PubMedPubMedCentral Wilson AL, Courtenay O, Kelly-Hope LA, Scott TW, Takken W, et al. The importance of vector control for the control and elimination of vector-borne diseases. PLoS Negl Trop Dis. 2020;14:e0007831.PubMedPubMedCentral
9.
go back to reference Kusnetsov RL. Malaria control by application of indoor spraying of residual insecticides in tropical Africa and its impacts on community health. Trop Doct. 1977;2:81–91. Kusnetsov RL. Malaria control by application of indoor spraying of residual insecticides in tropical Africa and its impacts on community health. Trop Doct. 1977;2:81–91.
10.
go back to reference Teklehaimanot A, Sachs JD, Curtis C. Malaria control needs mass distribution of insecticidal bednets. Lancet. 2007;369:2143–6.PubMed Teklehaimanot A, Sachs JD, Curtis C. Malaria control needs mass distribution of insecticidal bednets. Lancet. 2007;369:2143–6.PubMed
11.
go back to reference Hemingway J. Resistance: a problem without an easy solution. Pestic Biochem Physiol. 2018;151:73–5.PubMed Hemingway J. Resistance: a problem without an easy solution. Pestic Biochem Physiol. 2018;151:73–5.PubMed
12.
go back to reference Sadasivaia S, Tozan Y, Breman J. Dichlorodiphenyltrichloroethane (DDT) for indoor residual spraying in Africa: how can it be used for malaria control? Am J Trop Med Hyg. 2007;77:249–63. Sadasivaia S, Tozan Y, Breman J. Dichlorodiphenyltrichloroethane (DDT) for indoor residual spraying in Africa: how can it be used for malaria control? Am J Trop Med Hyg. 2007;77:249–63.
13.
go back to reference Najera JA. Malaria control: achievements, problems and strategies. Parassitologia. 2001;43:1–2.PubMed Najera JA. Malaria control: achievements, problems and strategies. Parassitologia. 2001;43:1–2.PubMed
14.
go back to reference Harper PA, Lisansky ET, Sasse BE. Malaria and other insect-borne diseases in the South Pacific campaign, 1942–194. Am J Trop Med Hyg. 1947;21:1–67. Harper PA, Lisansky ET, Sasse BE. Malaria and other insect-borne diseases in the South Pacific campaign, 1942–194. Am J Trop Med Hyg. 1947;21:1–67.
15.
go back to reference Hervy JP, Sales S. Evaluation de la rémanence de deux pyréthrinoïdes de synthèse-OMS-1821 et OMS-1998-après imprégnation de différents tissus entrant dans la confection de moustiquaires. OCCGE: Bobo-Dioulasso; 1980. p. 10. Hervy JP, Sales S. Evaluation de la rémanence de deux pyréthrinoïdes de synthèse-OMS-1821 et OMS-1998-après imprégnation de différents tissus entrant dans la confection de moustiquaires. OCCGE: Bobo-Dioulasso; 1980. p. 10.
16.
go back to reference Darriet F, Robert V, Vien N, Carnevale T, WHO. Evaluation of the efficacy of permethrin impregnated intact and perforated mosquito nets against vectors of malaria. WHO_Mal-84.1008.pdf. Geneva, World Health Organization; 1984. Darriet F, Robert V, Vien N, Carnevale T, WHO. Evaluation of the efficacy of permethrin impregnated intact and perforated mosquito nets against vectors of malaria. WHO_Mal-84.1008.pdf. Geneva, World Health Organization; 1984.
17.
go back to reference Rupp H. A contribution to tsetse control: the use of fabrics impregnated with DDT against G. palpalis. Acta Trop. 1952;9:289–303.PubMed Rupp H. A contribution to tsetse control: the use of fabrics impregnated with DDT against G. palpalis. Acta Trop. 1952;9:289–303.PubMed
18.
go back to reference Laveissiere C, Couret D. Control of riverine tsetse flies with biconical traps impregnated with insecticide in moist savannah. II. Quantitative results after first experiments. Cahiers ORSTOM, Entomologie Médicale et Parasitologie. 1980;18:209–21. Laveissiere C, Couret D. Control of riverine tsetse flies with biconical traps impregnated with insecticide in moist savannah. II. Quantitative results after first experiments. Cahiers ORSTOM, Entomologie Médicale et Parasitologie. 1980;18:209–21.
19.
go back to reference Nájera J, González-Silva M, Alonso PL. Some lessons for the future from the Global Malaria Eradication Programme (1955–1969). PLoS Med. 2011;8:e1000412.PubMedPubMedCentral Nájera J, González-Silva M, Alonso PL. Some lessons for the future from the Global Malaria Eradication Programme (1955–1969). PLoS Med. 2011;8:e1000412.PubMedPubMedCentral
20.
go back to reference WHO. Alma Ata Declaration. Geneva: World Health Organization; 1978. WHO. Alma Ata Declaration. Geneva: World Health Organization; 1978.
21.
go back to reference World Health Organization. Global malaria control strategy. Geneva: World Health Organization; 1993. World Health Organization. Global malaria control strategy. Geneva: World Health Organization; 1993.
22.
go back to reference Alonso PL, Lindsay SW, Armstrong S, Keita K, Gomez P, Shenton FC, et al. A malaria control trial using insecticide-treated bed nets and targeted chemoprophylaxis in a rural area of the Gambia, West Africa. 6. The impact of interventions on mortality and morbidity from malaria. Trans R Soc Trop Med Hyg. 1993;87:37–44.PubMed Alonso PL, Lindsay SW, Armstrong S, Keita K, Gomez P, Shenton FC, et al. A malaria control trial using insecticide-treated bed nets and targeted chemoprophylaxis in a rural area of the Gambia, West Africa. 6. The impact of interventions on mortality and morbidity from malaria. Trans R Soc Trop Med Hyg. 1993;87:37–44.PubMed
23.
go back to reference Curtis CF, Mnzava AE. Comparison of house spraying and insecticide-treated nets for malaria control. Bull World Health Organ. 2000;78:1389–400.PubMedPubMedCentral Curtis CF, Mnzava AE. Comparison of house spraying and insecticide-treated nets for malaria control. Bull World Health Organ. 2000;78:1389–400.PubMedPubMedCentral
24.
go back to reference Alonso PL, Lindsay SW, Armstrong JR, Conteh M, Hill AG, David PH, et al. The effect of insecticide-treated bed nets on mortality of Gambian children. Lancet. 1991;337:1499–502.PubMed Alonso PL, Lindsay SW, Armstrong JR, Conteh M, Hill AG, David PH, et al. The effect of insecticide-treated bed nets on mortality of Gambian children. Lancet. 1991;337:1499–502.PubMed
25.
go back to reference WHO. The Abuja Declaration and the plan of action. An extract from the African Summit on Roll Back Malaria, Abuja. World Health Organization; 2000. WHO. The Abuja Declaration and the plan of action. An extract from the African Summit on Roll Back Malaria, Abuja. World Health Organization; 2000.
26.
go back to reference Lengeler C. Insecticide-treated bed nets and curtains for preventing malaria. Cochrane Database Syst Rev. 2004;2:CD000s363. Lengeler C. Insecticide-treated bed nets and curtains for preventing malaria. Cochrane Database Syst Rev. 2004;2:CD000s363.
27.
go back to reference WHO. 58th World Health Assembly Resolution WHA58.2: Malaria Control, WHA58/WHA58-2. Geneva: World Health Organization; 2005. WHO. 58th World Health Assembly Resolution WHA58.2: Malaria Control, WHA58/WHA58-2. Geneva: World Health Organization; 2005.
28.
go back to reference WHO. Global Malaria Action Plan. Geneva: World Health Organization Roll Back Malaria Partnership; 2009. WHO. Global Malaria Action Plan. Geneva: World Health Organization Roll Back Malaria Partnership; 2009.
29.
go back to reference WHO. Guidelines for malaria vector control. Geneva: World Health Organization; 2019. WHO. Guidelines for malaria vector control. Geneva: World Health Organization; 2019.
30.
go back to reference WHO. World Malaria report 2018. Geneva: World Health Organization; 2019. WHO. World Malaria report 2018. Geneva: World Health Organization; 2019.
32.
go back to reference Eisele TP, Larsen DA, Walker N, Cibulskis RE, Yukich JO, Zikusooka CM, et al. Estimates of child deaths prevented from malaria prevention scale-up in Africa 2001-2010. Malar J. 2012;11:93.PubMedPubMedCentral Eisele TP, Larsen DA, Walker N, Cibulskis RE, Yukich JO, Zikusooka CM, et al. Estimates of child deaths prevented from malaria prevention scale-up in Africa 2001-2010. Malar J. 2012;11:93.PubMedPubMedCentral
33.
go back to reference WHO. The African Malaria Report. Geneva: World Health Organization; 2003. WHO. The African Malaria Report. Geneva: World Health Organization; 2003.
34.
go back to reference WHO. The African Malaria Report 2006. Geneva: World Health Organization; 2006. p. 120. WHO. The African Malaria Report 2006. Geneva: World Health Organization; 2006. p. 120.
35.
go back to reference Lindsay SW, Alonso PL, Armstrong JR, Hemingway J, Adiamah JH, Shenton FC, et al. A malaria control trial using insecticide-treated bed nets and targeted chemoprophylaxis in a rural area of The Gambia, West Africa. 7. Impact of permethrin-impregnated bed nets on malaria vectors. Trans R Soc Trop Med Hyg. 1993;87(Suppl 2):45–51.PubMed Lindsay SW, Alonso PL, Armstrong JR, Hemingway J, Adiamah JH, Shenton FC, et al. A malaria control trial using insecticide-treated bed nets and targeted chemoprophylaxis in a rural area of The Gambia, West Africa. 7. Impact of permethrin-impregnated bed nets on malaria vectors. Trans R Soc Trop Med Hyg. 1993;87(Suppl 2):45–51.PubMed
36.
go back to reference Lindsay SW, Adiamah JH, Miller JE, Armstrong JR. Pyrethroid-treated bednet effects on mosquitoes of the Anopheles gambiae complex. Med Vet Entomol. 1991;5:477–83.PubMed Lindsay SW, Adiamah JH, Miller JE, Armstrong JR. Pyrethroid-treated bednet effects on mosquitoes of the Anopheles gambiae complex. Med Vet Entomol. 1991;5:477–83.PubMed
37.
go back to reference Lindsay SW, Adiamah JH, Armstrong JR. The effect of permethrin-impregnated bed nets on house entry by mosquitoes in The Gambia. Bull Entomol Res. 1992;82:49–55. Lindsay SW, Adiamah JH, Armstrong JR. The effect of permethrin-impregnated bed nets on house entry by mosquitoes in The Gambia. Bull Entomol Res. 1992;82:49–55.
38.
go back to reference Clarke SE, Bøgh C, Brown RC, Pinder M, Lindsay SW. Do untreated bednets protect against malaria? Trans R Soc Hyg Trop Med. 2001;95:457–62. Clarke SE, Bøgh C, Brown RC, Pinder M, Lindsay SW. Do untreated bednets protect against malaria? Trans R Soc Hyg Trop Med. 2001;95:457–62.
39.
go back to reference Mwangi TW, Ross A, Marsh K, Snow RW. The effects of untreated bednets on malaria infection and morbidity on the Kenyan coast. Trans R Soc Hyg Trop Med. 2003;97:369–72. Mwangi TW, Ross A, Marsh K, Snow RW. The effects of untreated bednets on malaria infection and morbidity on the Kenyan coast. Trans R Soc Hyg Trop Med. 2003;97:369–72.
40.
go back to reference Guyatt HL, Snow RW. The cost of not treating bednets. Trends Parasitol. 2002;18:12–6.PubMed Guyatt HL, Snow RW. The cost of not treating bednets. Trends Parasitol. 2002;18:12–6.PubMed
41.
go back to reference Takken W. Do insecticide-treated bednets have an effect on malaria vectors? Trop Med Int Health. 2002;7:1022–30.PubMed Takken W. Do insecticide-treated bednets have an effect on malaria vectors? Trop Med Int Health. 2002;7:1022–30.PubMed
42.
go back to reference Carnevale P, Bitsindou P, Diomandé L, Robert V. Insecticide impregnation can restore the efficiency of torn bed nets and reduce man-vector contact in malaria endemic areas. Trans R Soc Trop Med Hyg. 1992;86:362–4.PubMed Carnevale P, Bitsindou P, Diomandé L, Robert V. Insecticide impregnation can restore the efficiency of torn bed nets and reduce man-vector contact in malaria endemic areas. Trans R Soc Trop Med Hyg. 1992;86:362–4.PubMed
43.
go back to reference Rafinejad J, Vatandoos H, Nikpoor F, Abai MR, Shaeghi M, Duchen S, et al. Effect of washing on the bio-efficacy of insecticide-treated nets (ITNs) and long-lasting insecticidal nets (LLINs) against main malaria vector Anopheles stephensi by three bioassay methods. J Vector Borne Dis. 2008;45:143–50.PubMed Rafinejad J, Vatandoos H, Nikpoor F, Abai MR, Shaeghi M, Duchen S, et al. Effect of washing on the bio-efficacy of insecticide-treated nets (ITNs) and long-lasting insecticidal nets (LLINs) against main malaria vector Anopheles stephensi by three bioassay methods. J Vector Borne Dis. 2008;45:143–50.PubMed
44.
go back to reference Bhatt RM, Yadav RS, Adak T, Babu CJ. Persistence and wash-resistance of insecticidal efficacy of nettings treated with deltamethrin tablet formulation (KO TAB®) against malaria vectors. J Am Mosq Control Assoc. 2005;21:54–8.PubMed Bhatt RM, Yadav RS, Adak T, Babu CJ. Persistence and wash-resistance of insecticidal efficacy of nettings treated with deltamethrin tablet formulation (KO TAB®) against malaria vectors. J Am Mosq Control Assoc. 2005;21:54–8.PubMed
45.
go back to reference WHO. Business plan for stimulating the development, manufacturing, and widespread distribution of long-lasting insecticidal nets. Geneva: World Health Organization; 2004. WHO. Business plan for stimulating the development, manufacturing, and widespread distribution of long-lasting insecticidal nets. Geneva: World Health Organization; 2004.
46.
go back to reference Ito T, Okuno T. Development of Olyset® net as a Tool for Malaria Control. Sumitomo Kagaku Tokushugo. Sumitomo Chemical Review. 2006. Ito T, Okuno T. Development of Olyset® net as a Tool for Malaria Control. Sumitomo Kagaku Tokushugo. Sumitomo Chemical Review. 2006.
47.
go back to reference WHO. Insecticide treated nets: a position Statement. Geneva: World Health Organization; 2007. WHO. Insecticide treated nets: a position Statement. Geneva: World Health Organization; 2007.
48.
go back to reference Guillet P, Alnwick D, Cham MK, Neira M, Zim M, Heymann D, et al. Long-lasting treated mosquito nets: a breakthrough in malaria prevention. Bull World Health Organ. 2001;79:998.PubMedPubMedCentral Guillet P, Alnwick D, Cham MK, Neira M, Zim M, Heymann D, et al. Long-lasting treated mosquito nets: a breakthrough in malaria prevention. Bull World Health Organ. 2001;79:998.PubMedPubMedCentral
49.
go back to reference WHO. Report of the fifth WHOPES working group meeting. Geneva: World Health Organization; 2001. WHO. Report of the fifth WHOPES working group meeting. Geneva: World Health Organization; 2001.
50.
go back to reference WHO. Report of the seventh WHOPES working group meeting. Geneva: World Health Organization; 2004. WHO. Report of the seventh WHOPES working group meeting. Geneva: World Health Organization; 2004.
51.
go back to reference WHO. Report of the Tenth WHOPES working group Meeting: Review of: SPINOSAD 0.5% GR & 12% SC, LAMBDA-CYHALOTHRIN 10% CS, K-O TAB 1-2-3. Geneva: World Health Organization; 2007. WHO. Report of the Tenth WHOPES working group Meeting: Review of: SPINOSAD 0.5% GR & 12% SC, LAMBDA-CYHALOTHRIN 10% CS, K-O TAB 1-2-3. Geneva: World Health Organization; 2007.
52.
go back to reference WHO. World Malaria Report 2010. Geneva: World Health Organization; 2010. WHO. World Malaria Report 2010. Geneva: World Health Organization; 2010.
53.
go back to reference WHO. World Malaria Report 2009. Geneva: World Health Organization; 2009. WHO. World Malaria Report 2009. Geneva: World Health Organization; 2009.
54.
go back to reference WHO. WHO Pesticides Evaluation Scheme: specifications for public health pesticides. Geneva: World Health Organization; 2015. WHO. WHO Pesticides Evaluation Scheme: specifications for public health pesticides. Geneva: World Health Organization; 2015.
55.
go back to reference WHO. Prequalification vector control: prequalified lists of vector control products. Geneva: World Health Organization; 2020. WHO. Prequalification vector control: prequalified lists of vector control products. Geneva: World Health Organization; 2020.
56.
go back to reference Monasch R, Reinisch A, Steketee RW, Korenromp EL, Alnwick D, Bergevin Y. Child coverage with mosquito nets and malaria treatment from population-based surveys in African countries: a baseline for monitoring progress in roll back malaria. Am J Trop Med Hyg. 2004;71:232–8.PubMed Monasch R, Reinisch A, Steketee RW, Korenromp EL, Alnwick D, Bergevin Y. Child coverage with mosquito nets and malaria treatment from population-based surveys in African countries: a baseline for monitoring progress in roll back malaria. Am J Trop Med Hyg. 2004;71:232–8.PubMed
57.
go back to reference Noor AM, Amin AA, Akhwale WS, Snow RW. Increasing coverage and decreasing inequity in insecticide-treated bed net use among rural Kenyan children. PLoS Med. 2007;4:e255.PubMedPubMedCentral Noor AM, Amin AA, Akhwale WS, Snow RW. Increasing coverage and decreasing inequity in insecticide-treated bed net use among rural Kenyan children. PLoS Med. 2007;4:e255.PubMedPubMedCentral
58.
go back to reference Tilson D. The Social Marketing of Insecticide-Treated Nets (ITNs) in Kenya. Cases in Public Health Communication & Marketing, 2007. Tilson D. The Social Marketing of Insecticide-Treated Nets (ITNs) in Kenya. Cases in Public Health Communication & Marketing, 2007.
59.
go back to reference Webster J, Lines J, Bruce J, Armstron- Schellenberg J, Hanson K, et al. Which delivery systems reach the poor? A review of equity of coverage of ever-treated nets, never-treated nets, and immunisation to reduce child mortality in Africa. Lancet Infect Dis. 2005;5:709–17.PubMed Webster J, Lines J, Bruce J, Armstron- Schellenberg J, Hanson K, et al. Which delivery systems reach the poor? A review of equity of coverage of ever-treated nets, never-treated nets, and immunisation to reduce child mortality in Africa. Lancet Infect Dis. 2005;5:709–17.PubMed
60.
go back to reference Nathan R, Masanja H, Mshinda H, Schellenberg JA, de Savigny D, Lengeler C, et al. Mosquito nets and the poor: can social marketing redress inequities in access? Trop Med Int Health. 2004;9:1121–6.PubMed Nathan R, Masanja H, Mshinda H, Schellenberg JA, de Savigny D, Lengeler C, et al. Mosquito nets and the poor: can social marketing redress inequities in access? Trop Med Int Health. 2004;9:1121–6.PubMed
61.
go back to reference Schellenberg JR, Abdulla S, Monja H, Nathan R, Mukasa O, Marchant T, et al. KINET: a social marketing programme of treated nets and net treatment for malaria control in Tanzania, with evaluation of child health and long-term survival. Trans R Soc Trop Med Hyg. 1999;93:225–31.PubMed Schellenberg JR, Abdulla S, Monja H, Nathan R, Mukasa O, Marchant T, et al. KINET: a social marketing programme of treated nets and net treatment for malaria control in Tanzania, with evaluation of child health and long-term survival. Trans R Soc Trop Med Hyg. 1999;93:225–31.PubMed
62.
go back to reference Schellenberg JR, Abdulla S, Nathan R, Mukasa O, Marchant T, Kikumbi N, et al. Effect of large-scale social marketing of insecticide-treated nets on child survival in rural Tanzania. Lancet. 2001;357:1241–7.PubMed Schellenberg JR, Abdulla S, Nathan R, Mukasa O, Marchant T, Kikumbi N, et al. Effect of large-scale social marketing of insecticide-treated nets on child survival in rural Tanzania. Lancet. 2001;357:1241–7.PubMed
63.
go back to reference Yukich J, Tediosi F, Lengeler C. Operations, Costs and Cost-Effectiveness of Five Insecticide-Treated Net Programs (Eritrea, Malawi, Tanzania, Togo, Senegal) and Two Indoor Residual Spraying Programs (Kwa-Zulu-Natal, Mozambique). Swiss Tropical Institute; 2007. Yukich J, Tediosi F, Lengeler C. Operations, Costs and Cost-Effectiveness of Five Insecticide-Treated Net Programs (Eritrea, Malawi, Tanzania, Togo, Senegal) and Two Indoor Residual Spraying Programs (Kwa-Zulu-Natal, Mozambique). Swiss Tropical Institute; 2007.
64.
go back to reference Nyarango PM, Gebremeskel T, Mebrahtu G, Mufunda J, Abdulmumini U, Ogbamariam A, et al. A steep decline of malaria morbidity and mortality trends in Eritrea between 2000 and 2004: the effect of combination of control methods. Malar J. 2006;5:33.PubMedPubMedCentral Nyarango PM, Gebremeskel T, Mebrahtu G, Mufunda J, Abdulmumini U, Ogbamariam A, et al. A steep decline of malaria morbidity and mortality trends in Eritrea between 2000 and 2004: the effect of combination of control methods. Malar J. 2006;5:33.PubMedPubMedCentral
65.
go back to reference WHO. World Malaria Report 2008. Geneva: World Health Organization; 2008. WHO. World Malaria Report 2008. Geneva: World Health Organization; 2008.
66.
go back to reference WHO. Roll Back Malaria Global Strategic Plan 2005–2015. Geneva: World Health Organization; 2005. WHO. Roll Back Malaria Global Strategic Plan 2005–2015. Geneva: World Health Organization; 2005.
67.
go back to reference Zambia Ministry of Health. National Malaria Indicator Survey 2008. Lusaka: Ministry of Health; 2008. Zambia Ministry of Health. National Malaria Indicator Survey 2008. Lusaka: Ministry of Health; 2008.
68.
go back to reference WHO. World Malaria Report 2017. Geneva: World Health Organization; 2017. WHO. World Malaria Report 2017. Geneva: World Health Organization; 2017.
69.
go back to reference Finda MF, Moshi IR, Monroe A, Limwagu J, Nyoni A, Swai J, et al. Linking human behaviours and malaria vector biting risk in south-eastern Tanzania. PLoS ONE. 2019;14:e0217414.PubMedPubMedCentral Finda MF, Moshi IR, Monroe A, Limwagu J, Nyoni A, Swai J, et al. Linking human behaviours and malaria vector biting risk in south-eastern Tanzania. PLoS ONE. 2019;14:e0217414.PubMedPubMedCentral
70.
go back to reference Monroe A, Moore S, Koenker H, Lynch M, Ricotta E. Measuring and characterizing night time human behaviour as it relates to residual malaria transmission in sub-Saharan Africa: a review of the published literature. Malar J. 2019;18:6.PubMedPubMedCentral Monroe A, Moore S, Koenker H, Lynch M, Ricotta E. Measuring and characterizing night time human behaviour as it relates to residual malaria transmission in sub-Saharan Africa: a review of the published literature. Malar J. 2019;18:6.PubMedPubMedCentral
71.
go back to reference Sherrard-Smith E, Skarp JE, Beale AD, Fornadel C, Norris LC, Moore S, et al. Mosquito feeding behavior and how it influences residual malaria transmission across Africa. Proc Natl Acad Sci USA. 2019;116:15086–95.PubMed Sherrard-Smith E, Skarp JE, Beale AD, Fornadel C, Norris LC, Moore S, et al. Mosquito feeding behavior and how it influences residual malaria transmission across Africa. Proc Natl Acad Sci USA. 2019;116:15086–95.PubMed
72.
go back to reference Link BG, Phelan JC. McKeown and the idea that social conditions are fundamental causes of disease. Am J Public Health. 2002;92:730–2.PubMedPubMedCentral Link BG, Phelan JC. McKeown and the idea that social conditions are fundamental causes of disease. Am J Public Health. 2002;92:730–2.PubMedPubMedCentral
73.
go back to reference Abdulla S, Gemperli A, Mukasa O, Schellenberg JR, Lengeler C, Vounatsou P, et al. Spatial effects of the social marketing of insecticide-treated nets on malaria morbidity. Trop Med Int Health. 2005;10:11–8.PubMed Abdulla S, Gemperli A, Mukasa O, Schellenberg JR, Lengeler C, Vounatsou P, et al. Spatial effects of the social marketing of insecticide-treated nets on malaria morbidity. Trop Med Int Health. 2005;10:11–8.PubMed
74.
go back to reference Binka FN, Indome F, Smith T. Impact of spatial distribution of permethrin-impregnated bed nets on child mortality in rural Northern Ghana. Am J Trop Med Hyg. 1998;59:80–5.PubMed Binka FN, Indome F, Smith T. Impact of spatial distribution of permethrin-impregnated bed nets on child mortality in rural Northern Ghana. Am J Trop Med Hyg. 1998;59:80–5.PubMed
75.
go back to reference Hawley WA, Philip-Howard PA, Kuile FO, Terlouw DJ, Vulule JM, Ombok M, et al. Community-wide effects of permethrin-treated bed nets on child mortality and malaria morbidity in western Kenya. Am J Trop Med Hyg. 2003;68:121–7.PubMed Hawley WA, Philip-Howard PA, Kuile FO, Terlouw DJ, Vulule JM, Ombok M, et al. Community-wide effects of permethrin-treated bed nets on child mortality and malaria morbidity in western Kenya. Am J Trop Med Hyg. 2003;68:121–7.PubMed
76.
go back to reference Hawley WA, Kuile FO, Steketee RS, Nahlen BL, Terlouw DJ, Gimnig J, et al. Implications of the Western Kenya permethrin-treated bed net study for policy, program implementation, and future research. Am J Trop Med Hyg. 2003;68:168–73.PubMed Hawley WA, Kuile FO, Steketee RS, Nahlen BL, Terlouw DJ, Gimnig J, et al. Implications of the Western Kenya permethrin-treated bed net study for policy, program implementation, and future research. Am J Trop Med Hyg. 2003;68:168–73.PubMed
77.
go back to reference Lengeler C, Snow RW. From efficacy to effectiveness: insecticide treated bednets in Africa. Bull World Health Org. 1996;73:325–32. Lengeler C, Snow RW. From efficacy to effectiveness: insecticide treated bednets in Africa. Bull World Health Org. 1996;73:325–32.
78.
go back to reference Lengeler C, Smith TA, Armstrong-Schellenberg J. Focus on the effect of bednets on malaria morbidity and mortality. Parasitol Today. 1997;13:123–4.PubMed Lengeler C, Smith TA, Armstrong-Schellenberg J. Focus on the effect of bednets on malaria morbidity and mortality. Parasitol Today. 1997;13:123–4.PubMed
79.
go back to reference Lengeler C, Armstrong-Schellenberg J, D’Alessandro U, Binka F, Cattani J. Relative versus absolute risk of dying reduction after using insecticide-treated nets for malaria control in Africa. Trop Med Int Health. 1998;3:286–90.PubMed Lengeler C, Armstrong-Schellenberg J, D’Alessandro U, Binka F, Cattani J. Relative versus absolute risk of dying reduction after using insecticide-treated nets for malaria control in Africa. Trop Med Int Health. 1998;3:286–90.PubMed
80.
go back to reference Lengeler C, Armstrong-Schellenberg J, D’Alessandro U. Will reducing Plasmodium falciparum malaria transmssion alter malaria mortality among African children? Parasitol Today. 1995;11:425.PubMed Lengeler C, Armstrong-Schellenberg J, D’Alessandro U. Will reducing Plasmodium falciparum malaria transmssion alter malaria mortality among African children? Parasitol Today. 1995;11:425.PubMed
81.
go back to reference Walker N, Tam Y, Friberg IK. Overview of the lives saved tool (LiST). BMC Public Health. 2013;13:S3. Walker N, Tam Y, Friberg IK. Overview of the lives saved tool (LiST). BMC Public Health. 2013;13:S3.
82.
go back to reference Kleinschmidt I, Bradley J, Knox TB, Mnzava AP, Kafy HT, Mbogo C, et al. Implications of insecticide resistance for malaria vector control with long-lasting insecticidal nets: a WHO-coordinated, prospective, international, observational cohort study. Lancet Infect Dis. 2018;18:640–9.PubMedPubMedCentral Kleinschmidt I, Bradley J, Knox TB, Mnzava AP, Kafy HT, Mbogo C, et al. Implications of insecticide resistance for malaria vector control with long-lasting insecticidal nets: a WHO-coordinated, prospective, international, observational cohort study. Lancet Infect Dis. 2018;18:640–9.PubMedPubMedCentral
83.
go back to reference Snow RW, Rowan KM, Lindsay SW, Greenwood BM. A trial of bed nets (mosquito nets) as a malaria control strategy in a rural area of The Gambia, West Africa. Trans R Soc Trop Med Hyg. 1988;82:212–5.PubMed Snow RW, Rowan KM, Lindsay SW, Greenwood BM. A trial of bed nets (mosquito nets) as a malaria control strategy in a rural area of The Gambia, West Africa. Trans R Soc Trop Med Hyg. 1988;82:212–5.PubMed
84.
go back to reference Clarke SE, Bøgh C, Pinder M, Walraven GE, Lindsay SW. Do untreated nets protect against malaria infection. Trans R Soc Trop Med Hyg. 2001;95:457–62.PubMed Clarke SE, Bøgh C, Pinder M, Walraven GE, Lindsay SW. Do untreated nets protect against malaria infection. Trans R Soc Trop Med Hyg. 2001;95:457–62.PubMed
85.
go back to reference Mwangi TW, Ross A, Marsh K, Snow RW. The effects of untreated bednets on malaria infection and morbidity on the Kenyan coast. Trans R Soc Trop Med Hyg. 2003;97:369–72.PubMed Mwangi TW, Ross A, Marsh K, Snow RW. The effects of untreated bednets on malaria infection and morbidity on the Kenyan coast. Trans R Soc Trop Med Hyg. 2003;97:369–72.PubMed
86.
go back to reference Hii JL, Smith T, Vounatsou P, Alexander N, Mai A, Ibam E, et al. Area effects of bednet use in a malaria-endemic area in Papua New Guinea. Trans R Soc Trop Med Hyg. 2001;95:7–13.PubMed Hii JL, Smith T, Vounatsou P, Alexander N, Mai A, Ibam E, et al. Area effects of bednet use in a malaria-endemic area in Papua New Guinea. Trans R Soc Trop Med Hyg. 2001;95:7–13.PubMed
87.
go back to reference Russell TL, Lwetoijera DW, Maliti D, Chipwaza B, Kihonda J, Charlwood JD, et al. Impact of promoting longer-lasting insecticide treatment of bed nets upon malaria transmission in a rural Tanzanian setting with pre-existing high coverage of untreated nets. Malar J. 2010;9:187.PubMedPubMedCentral Russell TL, Lwetoijera DW, Maliti D, Chipwaza B, Kihonda J, Charlwood JD, et al. Impact of promoting longer-lasting insecticide treatment of bed nets upon malaria transmission in a rural Tanzanian setting with pre-existing high coverage of untreated nets. Malar J. 2010;9:187.PubMedPubMedCentral
88.
go back to reference Smith T, Charlwood JD, Kihonda J, Mwankusye S, Billingsley P, Meuwissen J, et al. Absence of seasonal variation in malaria parasitemia in an area of intense seasonal transmission. Acta Trop. 1993;54:55–72.PubMed Smith T, Charlwood JD, Kihonda J, Mwankusye S, Billingsley P, Meuwissen J, et al. Absence of seasonal variation in malaria parasitemia in an area of intense seasonal transmission. Acta Trop. 1993;54:55–72.PubMed
89.
go back to reference Kitua AY, Smith T, Alonso PL, Masanja H, Urassa H, Menendez C, et al. Plasmodium falciparum malaria in the first year of life in an area of intense and perenial transmssion. Trop Med Int Health. 1996;1:475–84.PubMed Kitua AY, Smith T, Alonso PL, Masanja H, Urassa H, Menendez C, et al. Plasmodium falciparum malaria in the first year of life in an area of intense and perenial transmssion. Trop Med Int Health. 1996;1:475–84.PubMed
90.
go back to reference Homan T, Hiscox A, Mweresa CK, Masiga D, Mukabana WR, Oria P, et al. The effect of mass mosquito trapping on malaria transmission and disease burden (SolarMal): a stepped-wedge cluster-randomised trial. Lancet. 2016;388:1193–201.PubMed Homan T, Hiscox A, Mweresa CK, Masiga D, Mukabana WR, Oria P, et al. The effect of mass mosquito trapping on malaria transmission and disease burden (SolarMal): a stepped-wedge cluster-randomised trial. Lancet. 2016;388:1193–201.PubMed
91.
go back to reference Choi HW, Breman JG, Teutsch SM, Liu S, Hightower AW, Sexton JD. The effectiveness of insecticide-impregnated bed nets in reducing cases of malaria infection: a meta-analysis of published results. Am J Trop Med Hyg. 1995;52:377–82.PubMed Choi HW, Breman JG, Teutsch SM, Liu S, Hightower AW, Sexton JD. The effectiveness of insecticide-impregnated bed nets in reducing cases of malaria infection: a meta-analysis of published results. Am J Trop Med Hyg. 1995;52:377–82.PubMed
92.
go back to reference Okumu FO, Mbeyela E, Lingamba G, Moore J, Ntamatungiro AJ, Kavishe D, et al. Comparative field evaluation of combinations of long-lasting insecticide treated nets and indoor residual spraying, relative to either method alone, for malaria prevention in an area where the main vector is Anopheles arabiensis. Parasit Vectors. 2013;6:46.PubMedPubMedCentral Okumu FO, Mbeyela E, Lingamba G, Moore J, Ntamatungiro AJ, Kavishe D, et al. Comparative field evaluation of combinations of long-lasting insecticide treated nets and indoor residual spraying, relative to either method alone, for malaria prevention in an area where the main vector is Anopheles arabiensis. Parasit Vectors. 2013;6:46.PubMedPubMedCentral
93.
go back to reference Okumu FO, Kiware S, Moore SJ, Killeen G. Mathematical evaluation of community level impact of combining bed nets and indoor residual spraying upon malaria transmission in areas where the main vectors are Anopheles arabiensis mosquitoes. Parasit Vectors. 2013;6:17.PubMedPubMedCentral Okumu FO, Kiware S, Moore SJ, Killeen G. Mathematical evaluation of community level impact of combining bed nets and indoor residual spraying upon malaria transmission in areas where the main vectors are Anopheles arabiensis mosquitoes. Parasit Vectors. 2013;6:17.PubMedPubMedCentral
94.
go back to reference Durnez L, Coosemans M. Residual transmission of malaria: an old issue for new approaches. In: Manguin S, editor. Anopheles mosquitoes - new insights into malaria vectors. London: IntechOpen; 2013. p. 671–704. Durnez L, Coosemans M. Residual transmission of malaria: an old issue for new approaches. In: Manguin S, editor. Anopheles mosquitoes - new insights into malaria vectors. London: IntechOpen; 2013. p. 671–704.
95.
go back to reference Okumu FO, Govella NJ, Moore SJ, Chitnis N, Killeen G. Potential benefits, limitations and target product-profiles of odor-baited mosquito traps for malaria control in Africa. PLoS ONE. 2010;5:e11573.PubMedPubMedCentral Okumu FO, Govella NJ, Moore SJ, Chitnis N, Killeen G. Potential benefits, limitations and target product-profiles of odor-baited mosquito traps for malaria control in Africa. PLoS ONE. 2010;5:e11573.PubMedPubMedCentral
96.
go back to reference Lindsay SW, Snow RW. The trouble with eaves: house entry by vectors of malaria. Trans R Soc Trop Med Hyg. 1988;82:645–6.PubMed Lindsay SW, Snow RW. The trouble with eaves: house entry by vectors of malaria. Trans R Soc Trop Med Hyg. 1988;82:645–6.PubMed
97.
go back to reference Kirby MJ, Ameh D, Bottomley C, Green C, Jawara M, Milligan PJ, et al. Effect of two different house screening interventions on exposure to malaria vectors and on anaemia in children in The Gambia: a randomised controlled trial. Lancet. 2009;374:998–1009.PubMedPubMedCentral Kirby MJ, Ameh D, Bottomley C, Green C, Jawara M, Milligan PJ, et al. Effect of two different house screening interventions on exposure to malaria vectors and on anaemia in children in The Gambia: a randomised controlled trial. Lancet. 2009;374:998–1009.PubMedPubMedCentral
98.
go back to reference Kirby MJ, Green C, Milligan PM, Sismanidis C, Jasseh M, Conway DJ, et al. Risk factors for house-entry by malaria vectors in a rural town and satellite villages in The Gambia. Malar J. 2008;7:2.PubMedPubMedCentral Kirby MJ, Green C, Milligan PM, Sismanidis C, Jasseh M, Conway DJ, et al. Risk factors for house-entry by malaria vectors in a rural town and satellite villages in The Gambia. Malar J. 2008;7:2.PubMedPubMedCentral
99.
go back to reference Kaindoa EW, Mkandawile G, Ligamba G, Kelly-Hope L, Okumu FO. Correlations between household occupancy and malaria vector biting risk in rural Tanzanian villages: implications for high-resolution spatial targeting of control interventions. Malar J. 2016;15:199.PubMedPubMedCentral Kaindoa EW, Mkandawile G, Ligamba G, Kelly-Hope L, Okumu FO. Correlations between household occupancy and malaria vector biting risk in rural Tanzanian villages: implications for high-resolution spatial targeting of control interventions. Malar J. 2016;15:199.PubMedPubMedCentral
100.
go back to reference Okumu FO, Moore SJ. Combining indoor residual spraying and insecticide-treated nets for malaria control in Africa: a review of possible outcomes and an outline of suggestions for the future. Malar J. 2011;10:208.PubMedPubMedCentral Okumu FO, Moore SJ. Combining indoor residual spraying and insecticide-treated nets for malaria control in Africa: a review of possible outcomes and an outline of suggestions for the future. Malar J. 2011;10:208.PubMedPubMedCentral
101.
go back to reference Gleave K, Lissenden N, Richardson M, Choi L, Ranson H. Piperonyl butoxide (PBO) combined with pyrethroids in insecticide-treated nets to prevent malaria in Africa. Cochrane Database Syst Rev. 2018;11:CD012776.PubMed Gleave K, Lissenden N, Richardson M, Choi L, Ranson H. Piperonyl butoxide (PBO) combined with pyrethroids in insecticide-treated nets to prevent malaria in Africa. Cochrane Database Syst Rev. 2018;11:CD012776.PubMed
102.
go back to reference Bøgh C, Penderson EM, Mukoko DA, Ouma JH. Permethrin-impregnated bed net effects on resting and feeding behaviour of lymphatic filariasis vector mosquitoes in Kenya. Med Vet Entomol. 1998;12:52–9.PubMed Bøgh C, Penderson EM, Mukoko DA, Ouma JH. Permethrin-impregnated bed net effects on resting and feeding behaviour of lymphatic filariasis vector mosquitoes in Kenya. Med Vet Entomol. 1998;12:52–9.PubMed
103.
go back to reference Lines JD, Myamba J, Curtis CF. Experimental hut trials of permethrin-impregnated mosquito nets and eave curtains against malaria vectors in Tanzania. Med Vet Entomol. 1987;1:37–51.PubMed Lines JD, Myamba J, Curtis CF. Experimental hut trials of permethrin-impregnated mosquito nets and eave curtains against malaria vectors in Tanzania. Med Vet Entomol. 1987;1:37–51.PubMed
104.
go back to reference Tungu PK, Malima R, Mosha FW, Lyimo I, Maxwell C, Kaur H, et al. Evaluation of ICON Maxx, a long-lasting treatment kit for mosquito nets: experimental hut trials against anopheline mosquitoes in Tanzania. Malar J. 2015;14:225.PubMedPubMedCentral Tungu PK, Malima R, Mosha FW, Lyimo I, Maxwell C, Kaur H, et al. Evaluation of ICON Maxx, a long-lasting treatment kit for mosquito nets: experimental hut trials against anopheline mosquitoes in Tanzania. Malar J. 2015;14:225.PubMedPubMedCentral
105.
go back to reference Graham K, Kayedi MH, Maxwell C, Kaur H, Rehman H, Malima R, et al. Multi-country field trials comparing wash-resistance of PermaNet and conventional insecticide-treated nets against anopheline and culicine mosquitoes. Med Vet Entomol. 2005;19:72–83.PubMed Graham K, Kayedi MH, Maxwell C, Kaur H, Rehman H, Malima R, et al. Multi-country field trials comparing wash-resistance of PermaNet and conventional insecticide-treated nets against anopheline and culicine mosquitoes. Med Vet Entomol. 2005;19:72–83.PubMed
106.
go back to reference Malima RC, Magesa SM, Tungu PK, Mwingira V, Magogo FS, Sudi W, et al. An experimental hut evaluation of Olyset® nets against anopheline mosquitoes after seven years use in Tanzanian villages. Malar J. 2008;7:38.PubMedPubMedCentral Malima RC, Magesa SM, Tungu PK, Mwingira V, Magogo FS, Sudi W, et al. An experimental hut evaluation of Olyset® nets against anopheline mosquitoes after seven years use in Tanzanian villages. Malar J. 2008;7:38.PubMedPubMedCentral
107.
go back to reference Maxwell CA, Myamba J, Magoma J, Rwegoshora RT, Magesa SM, Curtis CF. Tests of Olyset nets by bioassay and in experimental huts. J Vect Borne Dis. 2006;43:1–6. Maxwell CA, Myamba J, Magoma J, Rwegoshora RT, Magesa SM, Curtis CF. Tests of Olyset nets by bioassay and in experimental huts. J Vect Borne Dis. 2006;43:1–6.
108.
go back to reference Mosha FW, Lyimo IN, Oxborough RM, Matowo J, Malima R, Feston E, et al. Comparative efficacies of permethrin-, deltamethrin- and a-cypermethrin-treated nets, against Anopheles arabiensis and Culex quinquefasciatus in northern Tanzania. Ann Trop Med Parasitol. 2008;102:367–76.PubMed Mosha FW, Lyimo IN, Oxborough RM, Matowo J, Malima R, Feston E, et al. Comparative efficacies of permethrin-, deltamethrin- and a-cypermethrin-treated nets, against Anopheles arabiensis and Culex quinquefasciatus in northern Tanzania. Ann Trop Med Parasitol. 2008;102:367–76.PubMed
109.
go back to reference Tungu P, Magesa S, Maxwell C, Malima R, Masue D, Sudi W, et al. Evaluation of PermaNet 3.0 a deltamethrin-PBO combination net against Anopheles gambiae and pyrethroid resistant Culex quinquefasciatus mosquitoes: an experimental hut trial in Tanzania. Malar J. 2010;9:21.PubMedPubMedCentral Tungu P, Magesa S, Maxwell C, Malima R, Masue D, Sudi W, et al. Evaluation of PermaNet 3.0 a deltamethrin-PBO combination net against Anopheles gambiae and pyrethroid resistant Culex quinquefasciatus mosquitoes: an experimental hut trial in Tanzania. Malar J. 2010;9:21.PubMedPubMedCentral
110.
go back to reference Spitzen J, Ponzio C, Koenraandt CJ, Jamet HV, Takken W. Absence of close-range excitorepellent effects in malaria mosquitoes exposed to deltamethrin-treated bed nets. Am J Trop Med Hyg. 2014;90:1124–32.PubMedPubMedCentral Spitzen J, Ponzio C, Koenraandt CJ, Jamet HV, Takken W. Absence of close-range excitorepellent effects in malaria mosquitoes exposed to deltamethrin-treated bed nets. Am J Trop Med Hyg. 2014;90:1124–32.PubMedPubMedCentral
111.
go back to reference Dabiré RK, Diabaté A, Baldet T, Pare-Toe L, Guiguemdé RT, Ouédraogo JB, et al. Personal protection of long lasting insecticide-treated nets in areas of Anopheles gambiae ss resistance to pyrethroids. Malar J. 2006;5:12.PubMedPubMedCentral Dabiré RK, Diabaté A, Baldet T, Pare-Toe L, Guiguemdé RT, Ouédraogo JB, et al. Personal protection of long lasting insecticide-treated nets in areas of Anopheles gambiae ss resistance to pyrethroids. Malar J. 2006;5:12.PubMedPubMedCentral
112.
go back to reference Mathenge EM, Gimnig JE, Kolczak M, Ombok M, Irungu L, Hawley WA. Effect of permethrin-impregnated nets on exiting behavior, blood feeding success, and time of feeding of malaria mosquitoes (Diptera: Culicidae) in Western Kenya. J Med Entomol. 2001;38:531–6.PubMed Mathenge EM, Gimnig JE, Kolczak M, Ombok M, Irungu L, Hawley WA. Effect of permethrin-impregnated nets on exiting behavior, blood feeding success, and time of feeding of malaria mosquitoes (Diptera: Culicidae) in Western Kenya. J Med Entomol. 2001;38:531–6.PubMed
113.
go back to reference Ogoma SB, Ngonyani H, Simfukwe E, Mseka A, Moore J, Maia M, et al. The mode of action of spatial repellents and their impact on vectorial capacity of Anopheles gambiae sensu stricto. PLoS ONE. 2014;9:e110433.PubMedPubMedCentral Ogoma SB, Ngonyani H, Simfukwe E, Mseka A, Moore J, Maia M, et al. The mode of action of spatial repellents and their impact on vectorial capacity of Anopheles gambiae sensu stricto. PLoS ONE. 2014;9:e110433.PubMedPubMedCentral
114.
go back to reference Miller JE, Lindsay SW, Armstrong JR. Experimental hut trials of bednet impregnated with synthetic pyrethroid and organophosphate insecticides for mosquito control in The Gambia. Med Vet Entomol. 1991;5:465–76.PubMed Miller JE, Lindsay SW, Armstrong JR. Experimental hut trials of bednet impregnated with synthetic pyrethroid and organophosphate insecticides for mosquito control in The Gambia. Med Vet Entomol. 1991;5:465–76.PubMed
115.
go back to reference Maxwell CA, Myamba J, Njuwa KJ, Greenwood BM, Curtis CF. Comparison of bednets impregnated with different pyrethroids for their impact on mosquitoes and on re-infection with malaria after clearance of pre-existing infections with chlorproguanil-dapsone. Trans R Soc Trop Med Hyg. 1999;93:4–11.PubMed Maxwell CA, Myamba J, Njuwa KJ, Greenwood BM, Curtis CF. Comparison of bednets impregnated with different pyrethroids for their impact on mosquitoes and on re-infection with malaria after clearance of pre-existing infections with chlorproguanil-dapsone. Trans R Soc Trop Med Hyg. 1999;93:4–11.PubMed
116.
go back to reference Lines JD, Curtis CF, Myamba J, Njau R, WHO. Tests of repellent or insecticide impregnated curtains, bednets and anklets against malaria vectors in Tanzania. Geneva: World Health Organization; 1985. Lines JD, Curtis CF, Myamba J, Njau R, WHO. Tests of repellent or insecticide impregnated curtains, bednets and anklets against malaria vectors in Tanzania. Geneva: World Health Organization; 1985.
117.
go back to reference N’Guessan R, Corbel V, Akogbeto M, Rowland M. Reduced efficacy of insecticide-treated nets and indoor residual spraying for malaria control in pyrethroid resistance area. Benin. Emerg Infect Dis. 2007;13:199–206.PubMed N’Guessan R, Corbel V, Akogbeto M, Rowland M. Reduced efficacy of insecticide-treated nets and indoor residual spraying for malaria control in pyrethroid resistance area. Benin. Emerg Infect Dis. 2007;13:199–206.PubMed
118.
go back to reference Asidi AN, N’Guessan R, Koffi AA, Curtis CF, Hougard JM, Chandre F, et al. Experimental hut evalutaion of bednets treated with an organophosphate (chlorpyrifos-methyl) or a pyrethroid (lambdacyhalothrin) alone and in combination against insecticide-resistant Anopheles gambiae and Culex quinquefasciatus mosquitoes. Malar J. 2005;4:25.PubMedPubMedCentral Asidi AN, N’Guessan R, Koffi AA, Curtis CF, Hougard JM, Chandre F, et al. Experimental hut evalutaion of bednets treated with an organophosphate (chlorpyrifos-methyl) or a pyrethroid (lambdacyhalothrin) alone and in combination against insecticide-resistant Anopheles gambiae and Culex quinquefasciatus mosquitoes. Malar J. 2005;4:25.PubMedPubMedCentral
119.
go back to reference Asidi AN, N’Guessan R, Hutchinson RN, Traore-Lamizana M, Carnevale P, Curtis C. Experimental hut comparisons of nets treated with carbamate or pyrethroid insecticides, washed or unwashed, against pyrethroid-resistant mosquitoes. Med Vet Entomol. 2004;18:134–40.PubMed Asidi AN, N’Guessan R, Hutchinson RN, Traore-Lamizana M, Carnevale P, Curtis C. Experimental hut comparisons of nets treated with carbamate or pyrethroid insecticides, washed or unwashed, against pyrethroid-resistant mosquitoes. Med Vet Entomol. 2004;18:134–40.PubMed
120.
go back to reference N’Guessan R, Darriet F, Doannio JM, Chandre F, Carnevale P. Olyset Net® efficacy against pyrethroid-resistant Anopheles gambiae and Culex quinquefasciatus after 3 years’ field use in Côte d’Ivoire. Med Vet Entomol. 2001;151:97–104. N’Guessan R, Darriet F, Doannio JM, Chandre F, Carnevale P. Olyset Net® efficacy against pyrethroid-resistant Anopheles gambiae and Culex quinquefasciatus after 3 years’ field use in Côte d’Ivoire. Med Vet Entomol. 2001;151:97–104.
121.
go back to reference Smith A. A verandah-trap hut for studying the house-frequenting habits of mosquitos and for assessing insecticides. I.—A description of the verandahtrap hut and of the studies on the egress of Anopheles gambiae Giles and Mansonia uniformis (Theo) from an untreated hut. Bull Entomol Res. 1965;56:161–7.PubMed Smith A. A verandah-trap hut for studying the house-frequenting habits of mosquitos and for assessing insecticides. I.—A description of the verandahtrap hut and of the studies on the egress of Anopheles gambiae Giles and Mansonia uniformis (Theo) from an untreated hut. Bull Entomol Res. 1965;56:161–7.PubMed
122.
go back to reference Smith A. A verandah-trap hut for studying the house-frequenting habits of mosquitos and for assessing insecticides. II.—The effect of dichlorvos (DDVP) on egress and mortality of Anopheles gambiae Giles and Mansonia uniformis (Theo) entering naturally. Bull Entomol Res. 1965;56:275–82.PubMed Smith A. A verandah-trap hut for studying the house-frequenting habits of mosquitos and for assessing insecticides. II.—The effect of dichlorvos (DDVP) on egress and mortality of Anopheles gambiae Giles and Mansonia uniformis (Theo) entering naturally. Bull Entomol Res. 1965;56:275–82.PubMed
123.
go back to reference Silver JB, Service MW. Experimental hut studies in: mosquito ecology: field sampling methods. Springer, London. Chapt 16. 2008:1426-46. Silver JB, Service MW. Experimental hut studies in: mosquito ecology: field sampling methods. Springer, London. Chapt 16. 2008:1426-46.
124.
go back to reference Okumu FO, Moore J, Mbeyela E, Sherlock M, Sangusangu R, Ligamba G, et al. A modified experimental hut design for studying responses of disease-transmitting mosquitoes to indoor interventions: the Ifakara Experimental Huts. PLoS ONE. 2012;7:e30967.PubMedPubMedCentral Okumu FO, Moore J, Mbeyela E, Sherlock M, Sangusangu R, Ligamba G, et al. A modified experimental hut design for studying responses of disease-transmitting mosquitoes to indoor interventions: the Ifakara Experimental Huts. PLoS ONE. 2012;7:e30967.PubMedPubMedCentral
125.
go back to reference Oumbouke WA, Rowland M, Koffi AA, Alou LP, Camara S, N’Guessan R. Evaluation of an alpha-cypermethrin + PBO mixture long-lasting insecticidal net VEERALIN® LN against pyrethroid resistant Anopheles gambiae s.s.: an experimental hut trial in M’bé, central Côte d’Ivoire. Parasit Vectors. 2019;4:25. Oumbouke WA, Rowland M, Koffi AA, Alou LP, Camara S, N’Guessan R. Evaluation of an alpha-cypermethrin + PBO mixture long-lasting insecticidal net VEERALIN® LN against pyrethroid resistant Anopheles gambiae s.s.: an experimental hut trial in M’bé, central Côte d’Ivoire. Parasit Vectors. 2019;4:25.
126.
go back to reference Kitau J, Oxborough RM, Tungu PK, Matowo J, Malima R, Magesa S, Bruce J, et al. Species shifts in the Anopheles gambiae complex: do LLINs successfully control Anopheles arabiensis? PLoS ONE. 2012;7:e31481.PubMedPubMedCentral Kitau J, Oxborough RM, Tungu PK, Matowo J, Malima R, Magesa S, Bruce J, et al. Species shifts in the Anopheles gambiae complex: do LLINs successfully control Anopheles arabiensis? PLoS ONE. 2012;7:e31481.PubMedPubMedCentral
127.
go back to reference Toé KH, Jones CM, N’Fale S, Ismail HM, Dabire E, Ranson H. Increased pyrethroid resistance in malaria vectors and decreased bed net effectiveness, Burkina Faso. Emerg Infect Dis. 2014;20:1691.PubMedPubMedCentral Toé KH, Jones CM, N’Fale S, Ismail HM, Dabire E, Ranson H. Increased pyrethroid resistance in malaria vectors and decreased bed net effectiveness, Burkina Faso. Emerg Infect Dis. 2014;20:1691.PubMedPubMedCentral
128.
go back to reference Viana M, Hughes AJ, Matthiopoulos J, Ranson H. Delayed mortality effects cut the malaria transmission potential of insecticide-resistant mosquitoes. Proc Natl Acad Sci USA. 2016;113:8975–80.PubMed Viana M, Hughes AJ, Matthiopoulos J, Ranson H. Delayed mortality effects cut the malaria transmission potential of insecticide-resistant mosquitoes. Proc Natl Acad Sci USA. 2016;113:8975–80.PubMed
129.
go back to reference Oxborough RM, Kitau J, Matowo J, Feston E, Mndeme R, Mosha FW. ITN mixtures of chlorfenapyr (pyrrole) and alphacypermethrin (pyrethroid) for control of pyrethroid resistant Anopheles arabiensis and Culex quinquefasciatus. PLoS ONE. 2013;8:e55781.PubMedPubMedCentral Oxborough RM, Kitau J, Matowo J, Feston E, Mndeme R, Mosha FW. ITN mixtures of chlorfenapyr (pyrrole) and alphacypermethrin (pyrethroid) for control of pyrethroid resistant Anopheles arabiensis and Culex quinquefasciatus. PLoS ONE. 2013;8:e55781.PubMedPubMedCentral
130.
go back to reference Ngufor C, N’Guessan R, Boko P, Odjo A, Vigninou E, Asidi A, et al. Combining indoor residual spraying with chlorfenapyr and long lasting insecticidal bednets for improved control of pyrethroid-resistant Anopheles gambiae: an experimental hut trial in Benin. Malar J. 2011;10:343.PubMedPubMedCentral Ngufor C, N’Guessan R, Boko P, Odjo A, Vigninou E, Asidi A, et al. Combining indoor residual spraying with chlorfenapyr and long lasting insecticidal bednets for improved control of pyrethroid-resistant Anopheles gambiae: an experimental hut trial in Benin. Malar J. 2011;10:343.PubMedPubMedCentral
131.
go back to reference Tiono AB, Ouédraogo A, Ouattara D, Bougouma EC, Coulibaly S, Diarra A, et al. Efficacy of Olyset Duo, a bednet containing pyriproxyfen and permethrin, versus a permethrin-only net against clinical malaria in an area with highly pyrethroid-resistant vectors in rural Burkina Faso: a cluster-randomised controlled trial. Lancet. 2018;392:569.PubMed Tiono AB, Ouédraogo A, Ouattara D, Bougouma EC, Coulibaly S, Diarra A, et al. Efficacy of Olyset Duo, a bednet containing pyriproxyfen and permethrin, versus a permethrin-only net against clinical malaria in an area with highly pyrethroid-resistant vectors in rural Burkina Faso: a cluster-randomised controlled trial. Lancet. 2018;392:569.PubMed
132.
go back to reference Ngufor C, N’Guessan R, Fagbohoun J, Odjo A, Malone D, Akogbeto M, et al. Olyset Duo® (a pyriproxyfen and permethrin mixture net): an experimental hut trial against pyrethroid resistant Anopheles gambiae and Culex quinquefasciatus in Southern Benin. PLoS ONE. 2014;9:e93603.PubMedPubMedCentral Ngufor C, N’Guessan R, Fagbohoun J, Odjo A, Malone D, Akogbeto M, et al. Olyset Duo® (a pyriproxyfen and permethrin mixture net): an experimental hut trial against pyrethroid resistant Anopheles gambiae and Culex quinquefasciatus in Southern Benin. PLoS ONE. 2014;9:e93603.PubMedPubMedCentral
133.
go back to reference Collins E, Vaselli NM, Sylla M, Beavogui AH, Orsborne J, Lawrence G, et al. The relationship between insecticide resistance, mosquito age and malaria prevalence in Anopheles gambiae s.l. from Guinea. Sci Rep. 2019;9:8846.PubMedPubMedCentral Collins E, Vaselli NM, Sylla M, Beavogui AH, Orsborne J, Lawrence G, et al. The relationship between insecticide resistance, mosquito age and malaria prevalence in Anopheles gambiae s.l. from Guinea. Sci Rep. 2019;9:8846.PubMedPubMedCentral
134.
go back to reference Killeen GF, Smith TA, Ferguson HM, Mshinda H, Abdulla S, Lengeler C, et al. Preventing childhood malaria in Africa by protecting adults from mosquitoes with insecticide-treated nets. PLoS Med. 2007;4:e229.PubMedPubMedCentral Killeen GF, Smith TA, Ferguson HM, Mshinda H, Abdulla S, Lengeler C, et al. Preventing childhood malaria in Africa by protecting adults from mosquitoes with insecticide-treated nets. PLoS Med. 2007;4:e229.PubMedPubMedCentral
135.
go back to reference Killeen GF, McKenzie FE, Foy BD, Bøgh C, Beier JC. The availability of potential hosts as a determinant of feeding behaviours and malaria transmission by mosquito populations. Trans R Soc Trop Med Hyg. 2001;95:469–76.PubMedPubMedCentral Killeen GF, McKenzie FE, Foy BD, Bøgh C, Beier JC. The availability of potential hosts as a determinant of feeding behaviours and malaria transmission by mosquito populations. Trans R Soc Trop Med Hyg. 2001;95:469–76.PubMedPubMedCentral
136.
go back to reference Kiswewski AE, Mellinger A, Spielman A, Malaney P, Sachs SE, Sachs J. A global index representing the stability of malaria transmission. Am J Trop Med Hyg. 2004;70:486–98. Kiswewski AE, Mellinger A, Spielman A, Malaney P, Sachs SE, Sachs J. A global index representing the stability of malaria transmission. Am J Trop Med Hyg. 2004;70:486–98.
137.
go back to reference Takken W, Verhulst NO. Host preferences of blood-feeding mosquitoes. Annu Rev Entomol. 2013;58:433–53.PubMed Takken W, Verhulst NO. Host preferences of blood-feeding mosquitoes. Annu Rev Entomol. 2013;58:433–53.PubMed
138.
go back to reference Russell TL, Govella NJ, Azizi S, Drakeley CJ, Kachur SP, Killeen GF. Increased proportions of outdoor feeding among residual malaria vector populations following increased use of insecticide-treated nets in rural Tanzania. Malar J. 2011;10:80.PubMedPubMedCentral Russell TL, Govella NJ, Azizi S, Drakeley CJ, Kachur SP, Killeen GF. Increased proportions of outdoor feeding among residual malaria vector populations following increased use of insecticide-treated nets in rural Tanzania. Malar J. 2011;10:80.PubMedPubMedCentral
139.
go back to reference Sherrard-Smith E, Griffin JT, Winskill P, Corbel V, Djenontin A, Moore S, et al. Systematic review of indoor residual spray efficacy and effectiveness against Plasmodium falciparum in Africa. Nat Commun. 2018;9:4982.PubMedPubMedCentral Sherrard-Smith E, Griffin JT, Winskill P, Corbel V, Djenontin A, Moore S, et al. Systematic review of indoor residual spray efficacy and effectiveness against Plasmodium falciparum in Africa. Nat Commun. 2018;9:4982.PubMedPubMedCentral
140.
go back to reference Griffin JT, Hollingsworth TD, Okell LC, Churcher TS, White M, Hinsley W, et al. Reducing Plasmodium falciparum malaria transmission in Africa: a model-based evaluation of intervention strategies. PLoS Med. 2010;7:e1000324.PubMedPubMedCentral Griffin JT, Hollingsworth TD, Okell LC, Churcher TS, White M, Hinsley W, et al. Reducing Plasmodium falciparum malaria transmission in Africa: a model-based evaluation of intervention strategies. PLoS Med. 2010;7:e1000324.PubMedPubMedCentral
141.
go back to reference Corbel V, Akogbeto M, Damien GB, Djenontin A, Chandre F, Rogier C, et al. Combination of malaria vector control interventions in pyrethroid resistance area in Benin: a cluster randomised controlled trial. Lancet Infect Dis. 2012;12:617–26.PubMed Corbel V, Akogbeto M, Damien GB, Djenontin A, Chandre F, Rogier C, et al. Combination of malaria vector control interventions in pyrethroid resistance area in Benin: a cluster randomised controlled trial. Lancet Infect Dis. 2012;12:617–26.PubMed
142.
go back to reference Mwangangi JM, Mbogo CM, Orindi BO, Muturi EJ, Midega J, Nzovu J, et al. Shifts in malaria vector species composition and transmission dynamics along the Kenyan coast over the past 20 years. Malar J. 2013;12:13.PubMedPubMedCentral Mwangangi JM, Mbogo CM, Orindi BO, Muturi EJ, Midega J, Nzovu J, et al. Shifts in malaria vector species composition and transmission dynamics along the Kenyan coast over the past 20 years. Malar J. 2013;12:13.PubMedPubMedCentral
143.
go back to reference The malERA Consultative Group on Vector Control. A research agenda for malaria eradication: vector control. PLoS Med. 2011;8:e1000401.PubMedCentral The malERA Consultative Group on Vector Control. A research agenda for malaria eradication: vector control. PLoS Med. 2011;8:e1000401.PubMedCentral
144.
go back to reference Derua YA, Alifrangis M, Hosea KM, Meyrowitsch DW, Magesa SM, Pedersen EM, et al. Change in composition of the Anopheles gambiae complex and its possible implications for the transmission of malaria and lymphatic filariasis in north-eastern Tanzania. Malar J. 2012;11:188.PubMedPubMedCentral Derua YA, Alifrangis M, Hosea KM, Meyrowitsch DW, Magesa SM, Pedersen EM, et al. Change in composition of the Anopheles gambiae complex and its possible implications for the transmission of malaria and lymphatic filariasis in north-eastern Tanzania. Malar J. 2012;11:188.PubMedPubMedCentral
145.
go back to reference Reddy MR, Overgaard HJ, Abaga S, Reddy VP, Caccone A, Kiszewski A, et al. Outdoor host seeking behaviour of Anopheles gambiae mosquitoes following initiation of malaria vector control on Bioko Island. Equatorial Guinea. Malar J. 2011;10:184.PubMed Reddy MR, Overgaard HJ, Abaga S, Reddy VP, Caccone A, Kiszewski A, et al. Outdoor host seeking behaviour of Anopheles gambiae mosquitoes following initiation of malaria vector control on Bioko Island. Equatorial Guinea. Malar J. 2011;10:184.PubMed
146.
go back to reference Killeen GF, Govella NJ, Lweotojeira DW, Okumu FO. Most outdoor malaria transmission by behaviourally-resistant Anopheles arabiensis is mediated by mosquitoes that have previously been inside houses. Malar J. 2016;15:225.PubMedPubMedCentral Killeen GF, Govella NJ, Lweotojeira DW, Okumu FO. Most outdoor malaria transmission by behaviourally-resistant Anopheles arabiensis is mediated by mosquitoes that have previously been inside houses. Malar J. 2016;15:225.PubMedPubMedCentral
147.
go back to reference Limwagu AJ, Kaindoa EK, Ngowo HS, Hape E, Finda MF, Mkandawile G, et al. Using a miniaturized double-net trap (DN-Mini) to assess relationships between indoor–outdoor biting preferences and physiological ages of two malaria vectors, Anopheles arabiensis and Anopheles funestus. Malar J. 2019;18:282.PubMedPubMedCentral Limwagu AJ, Kaindoa EK, Ngowo HS, Hape E, Finda MF, Mkandawile G, et al. Using a miniaturized double-net trap (DN-Mini) to assess relationships between indoor–outdoor biting preferences and physiological ages of two malaria vectors, Anopheles arabiensis and Anopheles funestus. Malar J. 2019;18:282.PubMedPubMedCentral
148.
go back to reference Ranson H, N’Guessan R, Lines J, Moiroux N, Nkuni Z, Corbel V. Pyrethroid resistance in African anopheline mosquitoes: what are the implications for malaria control? Trends Parasitol. 2011;27:91–8.PubMed Ranson H, N’Guessan R, Lines J, Moiroux N, Nkuni Z, Corbel V. Pyrethroid resistance in African anopheline mosquitoes: what are the implications for malaria control? Trends Parasitol. 2011;27:91–8.PubMed
149.
go back to reference Kleinschmidt I, Mnzava AP, Kafy HT, Mbogo C, Bashir AI, Bigoga J, et al. Design of a study to determine the impact of insecticide resistance on malaria vector control: a multi-country investigation. Malar J. 2015;14:282.PubMedPubMedCentral Kleinschmidt I, Mnzava AP, Kafy HT, Mbogo C, Bashir AI, Bigoga J, et al. Design of a study to determine the impact of insecticide resistance on malaria vector control: a multi-country investigation. Malar J. 2015;14:282.PubMedPubMedCentral
150.
go back to reference WHO. Test procedures for insecticide resistance monitoring in malaria vector mosquitoes. Geneva: World Health Organization; 2013. WHO. Test procedures for insecticide resistance monitoring in malaria vector mosquitoes. Geneva: World Health Organization; 2013.
151.
go back to reference Asidi A, N’Guessan R, Akogbeto M, Rowland M. Loss of household protection from use of insecticide-treated nets against pyrethroid-resistant mosquitoes. Benin. Emerg Infect Dis. 2012;18:1101–6.PubMed Asidi A, N’Guessan R, Akogbeto M, Rowland M. Loss of household protection from use of insecticide-treated nets against pyrethroid-resistant mosquitoes. Benin. Emerg Infect Dis. 2012;18:1101–6.PubMed
152.
go back to reference Lindblade KA, Mwandama D, Mzilahowa T, Steinhardt L, Gimnig J, Shah M, et al. A cohort study of the effectiveness of insecticide-treated bed nets to prevent malaria in an area of moderate pyrethroid resistance, Malawi. Malar J. 2015;14:31.PubMedPubMedCentral Lindblade KA, Mwandama D, Mzilahowa T, Steinhardt L, Gimnig J, Shah M, et al. A cohort study of the effectiveness of insecticide-treated bed nets to prevent malaria in an area of moderate pyrethroid resistance, Malawi. Malar J. 2015;14:31.PubMedPubMedCentral
153.
go back to reference Mabaso ML, Sharp B, Lengeler C. Historical review of malarial control in southern African with emphasis on the use of indoor residual house-spraying. Trop Med Int Health. 2004;9:846–56.PubMed Mabaso ML, Sharp B, Lengeler C. Historical review of malarial control in southern African with emphasis on the use of indoor residual house-spraying. Trop Med Int Health. 2004;9:846–56.PubMed
154.
go back to reference Wondji CS, Coleman M, Kleinschmidt I, Mzalihowa T, Irving H, Ndula M, et al. Impact of pyrethroid resistance on operational malaria control in Malawi. Proc Natl Acad Sci USA. 2012;109:19063–70.PubMed Wondji CS, Coleman M, Kleinschmidt I, Mzalihowa T, Irving H, Ndula M, et al. Impact of pyrethroid resistance on operational malaria control in Malawi. Proc Natl Acad Sci USA. 2012;109:19063–70.PubMed
155.
go back to reference Protopopoff N, Bortel WV, Marcotty T, Herp VM, Maes P, Baza D, et al. Spatial targeted vector control in the highlands of Burundi and its impact on malaria transmission. Malar J. 2007;6:158.PubMedPubMedCentral Protopopoff N, Bortel WV, Marcotty T, Herp VM, Maes P, Baza D, et al. Spatial targeted vector control in the highlands of Burundi and its impact on malaria transmission. Malar J. 2007;6:158.PubMedPubMedCentral
156.
go back to reference Protopopoff N, Bortel WV, Marcotty T, Herp MV, Maes P, Baza D, et al. Spatial targeted vector control is able to reduce malaria prevalence in the highlands of Burundi. Am J Trop Med Hyg. 2008;79:12–8.PubMed Protopopoff N, Bortel WV, Marcotty T, Herp MV, Maes P, Baza D, et al. Spatial targeted vector control is able to reduce malaria prevalence in the highlands of Burundi. Am J Trop Med Hyg. 2008;79:12–8.PubMed
157.
go back to reference Henry MC, Assi AB, Rogier C, Dossou-Yovo J, Chandre F, Guillet P, et al. Protective efficacy of lambda-cyhalothrin treated nets in Anopheles gambiae pyrethroid resistance areas of Côte d’Ivoire. Am J Trop Med Hyg. 2005;73:859–64.PubMed Henry MC, Assi AB, Rogier C, Dossou-Yovo J, Chandre F, Guillet P, et al. Protective efficacy of lambda-cyhalothrin treated nets in Anopheles gambiae pyrethroid resistance areas of Côte d’Ivoire. Am J Trop Med Hyg. 2005;73:859–64.PubMed
158.
go back to reference Paaijmans KP, Huijben S. Taking the ‘I’out of LLINs: using insecticides in vector control tools other than long-lasting nets to fight malaria. Malar J. 2020;19:73.PubMedPubMedCentral Paaijmans KP, Huijben S. Taking the ‘I’out of LLINs: using insecticides in vector control tools other than long-lasting nets to fight malaria. Malar J. 2020;19:73.PubMedPubMedCentral
159.
go back to reference Dahan YL, Koekemoer LL. Analysis of the genitalia rotation in the male Anopheles funestus (Diptera: Culicidae). Acta Trop. 2014;132:S20–5.PubMed Dahan YL, Koekemoer LL. Analysis of the genitalia rotation in the male Anopheles funestus (Diptera: Culicidae). Acta Trop. 2014;132:S20–5.PubMed
160.
go back to reference Riveron JM, Tchouakui M, Mugenzi L, Menze BD, Chiang M, Wondji C. Insecticide resistance in malaria vectors: An update at a global scale. In: Manguin S, Dev V, Eds. Towards Malaria Elimination-A Leap Forward. IntechOpen. Chapt. 2. 2018. Riveron JM, Tchouakui M, Mugenzi L, Menze BD, Chiang M, Wondji C. Insecticide resistance in malaria vectors: An update at a global scale. In: Manguin S, Dev V, Eds. Towards Malaria Elimination-A Leap Forward. IntechOpen. Chapt. 2. 2018.
161.
go back to reference Churcher TS, Lissenden N, Griffin JT, Worrall E, Ranson H. The impact of pyrethroid resistance on the efficacy and effectiveness of bednets for malaria control in Africa. eLife. 2016;5:e16090.PubMedPubMedCentral Churcher TS, Lissenden N, Griffin JT, Worrall E, Ranson H. The impact of pyrethroid resistance on the efficacy and effectiveness of bednets for malaria control in Africa. eLife. 2016;5:e16090.PubMedPubMedCentral
162.
go back to reference Protopopoff N, Mosha JF, Lukole E, Charlwood JD, Wright A, Mwalimu C, et al. Effectiveness of a long-lasting piperonyl butoxide-treated insecticidal net and indoor residual spray interventions, separately and together, against malaria transmitted by pyrethroid-resistant mosquitoes: a cluster, randomised controlled, two-by-two factorial design trial. Lancet. 2018;391:1577–88.PubMedPubMedCentral Protopopoff N, Mosha JF, Lukole E, Charlwood JD, Wright A, Mwalimu C, et al. Effectiveness of a long-lasting piperonyl butoxide-treated insecticidal net and indoor residual spray interventions, separately and together, against malaria transmitted by pyrethroid-resistant mosquitoes: a cluster, randomised controlled, two-by-two factorial design trial. Lancet. 2018;391:1577–88.PubMedPubMedCentral
163.
go back to reference Kulma K, Saddler A, Koella JC. Effects of age and larval nutrition on phenotypic expression of insecticide-resistance in Anopheles mosquitoes. PLoS ONE. 2013;8:e58322.PubMedPubMedCentral Kulma K, Saddler A, Koella JC. Effects of age and larval nutrition on phenotypic expression of insecticide-resistance in Anopheles mosquitoes. PLoS ONE. 2013;8:e58322.PubMedPubMedCentral
164.
go back to reference Chouaibou MS, Chabi J, Bingham GV, Knox TB, N’Drii L, Kesse L, et al. Increase in susceptibility to insecticides with aging of wild Anopheles gambiae mosquitoes from Côte d’Ivoire. BMC Infect Dis. 2012;12:214.PubMedPubMedCentral Chouaibou MS, Chabi J, Bingham GV, Knox TB, N’Drii L, Kesse L, et al. Increase in susceptibility to insecticides with aging of wild Anopheles gambiae mosquitoes from Côte d’Ivoire. BMC Infect Dis. 2012;12:214.PubMedPubMedCentral
165.
go back to reference Glunt KD, Thomas MB, Read AF. The effects of age, exposure history and malaria infection on the susceptibility of Anopheles mosquitoes to low concentrations of pyrethroid. PLoS ONE. 2011;6:e24968.PubMedPubMedCentral Glunt KD, Thomas MB, Read AF. The effects of age, exposure history and malaria infection on the susceptibility of Anopheles mosquitoes to low concentrations of pyrethroid. PLoS ONE. 2011;6:e24968.PubMedPubMedCentral
166.
go back to reference Thomas MB, Read AF. The threat (or not) of insecticide resistance for malaria control. Proc Natl Acad Sci USA. 2016;113:8900–2.PubMed Thomas MB, Read AF. The threat (or not) of insecticide resistance for malaria control. Proc Natl Acad Sci USA. 2016;113:8900–2.PubMed
167.
go back to reference Alout H, Djègbè I, Chandre F, Djogbénou LS, Dabire R, Corbel V, et al. Insecticide exposure impacts vector–parasite interactions in insecticide-resistant malaria vectors. Proc Biol Sci. 2014;281:20140389.PubMedPubMedCentral Alout H, Djègbè I, Chandre F, Djogbénou LS, Dabire R, Corbel V, et al. Insecticide exposure impacts vector–parasite interactions in insecticide-resistant malaria vectors. Proc Biol Sci. 2014;281:20140389.PubMedPubMedCentral
168.
go back to reference Kristan M, Line J, Nuwa A, Ntege C, Meek SR, Abeku TA. Exposure to deltamethrin affects development of Plasmodium falciparum inside wild pyrethroid resistant Anopheles gambiae ss mosquitoes in Uganda. Parasit Vectors. 2016;9:100.PubMedPubMedCentral Kristan M, Line J, Nuwa A, Ntege C, Meek SR, Abeku TA. Exposure to deltamethrin affects development of Plasmodium falciparum inside wild pyrethroid resistant Anopheles gambiae ss mosquitoes in Uganda. Parasit Vectors. 2016;9:100.PubMedPubMedCentral
169.
go back to reference Grossman MK, Oliver SV, Brooke BD, Thomas MB. Use of alternative bioassays to explore the impact of pyrethroid resistance on LLIN efficacy. Parasit Vectors. 2020;13:179.PubMedPubMedCentral Grossman MK, Oliver SV, Brooke BD, Thomas MB. Use of alternative bioassays to explore the impact of pyrethroid resistance on LLIN efficacy. Parasit Vectors. 2020;13:179.PubMedPubMedCentral
170.
go back to reference Alout H, Ndam NT, Sandeu MM, Djègbè I, Chandre F, Dabire R, et al. Insecticide resistance alleles affect vector competence of Anopheles gambiae ss for Plasmodium falciparum field isolates. PLoS ONE. 2013;8:e63849.PubMedPubMedCentral Alout H, Ndam NT, Sandeu MM, Djègbè I, Chandre F, Dabire R, et al. Insecticide resistance alleles affect vector competence of Anopheles gambiae ss for Plasmodium falciparum field isolates. PLoS ONE. 2013;8:e63849.PubMedPubMedCentral
171.
go back to reference Glunt KD, Ablio AP, Bassat Q, Bulo H, Gilbert AE, et al. Long-lasting insecticidal nets no longer effectively kill the highly resistant Anopheles funestus of southern Mozambique. Malar J. 2015;14:298.PubMedPubMedCentral Glunt KD, Ablio AP, Bassat Q, Bulo H, Gilbert AE, et al. Long-lasting insecticidal nets no longer effectively kill the highly resistant Anopheles funestus of southern Mozambique. Malar J. 2015;14:298.PubMedPubMedCentral
172.
go back to reference Glunt KD, Coetzee M, Hujben S, Koffi AA, Lynch PA, Huijben S, et al. Empirical and theoretical investigation into the potential impacts of insecticide resistance on the effectiveness of insecticide-treated bed nets. Evol Appl. 2017;11:431–41.PubMedPubMedCentral Glunt KD, Coetzee M, Hujben S, Koffi AA, Lynch PA, Huijben S, et al. Empirical and theoretical investigation into the potential impacts of insecticide resistance on the effectiveness of insecticide-treated bed nets. Evol Appl. 2017;11:431–41.PubMedPubMedCentral
173.
go back to reference Okumu FO, Chipwaza B, Madumla EP, Mbeyela E, Lingamba G, Moore J, et al. Implications of bio-efficacy and persistence of insecticides when indoor residual spraying and longlasting insecticide nets are combined for malaria prevention. Malar J. 2012;11:378.PubMedPubMedCentral Okumu FO, Chipwaza B, Madumla EP, Mbeyela E, Lingamba G, Moore J, et al. Implications of bio-efficacy and persistence of insecticides when indoor residual spraying and longlasting insecticide nets are combined for malaria prevention. Malar J. 2012;11:378.PubMedPubMedCentral
174.
go back to reference Strode C, Donegan S, Garner P, Enayati AA, Hemingway J. The impact of pyrethroid resistance on the efficacy of insecticide-treated bed nets against African anopheline mosquitoes: systematic review and meta-analysis. PLoS Med. 2014;11:e1001619.PubMedPubMedCentral Strode C, Donegan S, Garner P, Enayati AA, Hemingway J. The impact of pyrethroid resistance on the efficacy of insecticide-treated bed nets against African anopheline mosquitoes: systematic review and meta-analysis. PLoS Med. 2014;11:e1001619.PubMedPubMedCentral
175.
go back to reference Hemingway J, Ranson H, Magill A, Kolaczinski J, Fornadel C, Gimnig J, et al. Averting a malaria disaster: will insecticide resistance derail malaria control? Lancet. 2016;387:1785–8.PubMedPubMedCentral Hemingway J, Ranson H, Magill A, Kolaczinski J, Fornadel C, Gimnig J, et al. Averting a malaria disaster: will insecticide resistance derail malaria control? Lancet. 2016;387:1785–8.PubMedPubMedCentral
176.
go back to reference Ranson H, Lissenden N. Insecticide resistance in African Anopheles mosquitoes: a worsening situation that needs urgent action to maintain malaria control. Trends Parasitol. 2016;32:187–96.PubMed Ranson H, Lissenden N. Insecticide resistance in African Anopheles mosquitoes: a worsening situation that needs urgent action to maintain malaria control. Trends Parasitol. 2016;32:187–96.PubMed
177.
go back to reference Rivero A, Vézilier J, Weill M, Read AF, Gandon S. Insecticide control of vector-borne diseases: when is insecticide resistance a problem? PLoS Pathog. 2010;6:e1001000.PubMedPubMedCentral Rivero A, Vézilier J, Weill M, Read AF, Gandon S. Insecticide control of vector-borne diseases: when is insecticide resistance a problem? PLoS Pathog. 2010;6:e1001000.PubMedPubMedCentral
178.
go back to reference Ochomo EO, Bayoh NM, Walker ED, Obongo BO, Ombok MO, Ouma C, et al. The efficacy of long-lasting nets with declining physical integrity may be compromised in areas with high levels of pyrethroid resistance. Malar J. 2013;12:368.PubMedPubMedCentral Ochomo EO, Bayoh NM, Walker ED, Obongo BO, Ombok MO, Ouma C, et al. The efficacy of long-lasting nets with declining physical integrity may be compromised in areas with high levels of pyrethroid resistance. Malar J. 2013;12:368.PubMedPubMedCentral
179.
go back to reference Skovmand O, Bosselmann R. Strength of bed nets as function of denier, knitting pattern, texturizing and polymer. Malar J. 2011;10:87.PubMedPubMedCentral Skovmand O, Bosselmann R. Strength of bed nets as function of denier, knitting pattern, texturizing and polymer. Malar J. 2011;10:87.PubMedPubMedCentral
180.
go back to reference Sitotaw DB. An investigation on the dependency of bursting strength of knitted fabrics on knit structures. Ind Eng Manage. 2017;6:2169. Sitotaw DB. An investigation on the dependency of bursting strength of knitted fabrics on knit structures. Ind Eng Manage. 2017;6:2169.
181.
go back to reference Toé KH, Mechan F, Tangena JA, Morris M, Solino J, Traore A, et al. Assessing the impact of the addition of pyriproxyfen on the durability of permethrin-treated bed nets in Burkina Faso: a compound-randomized controlled trial. Malar J. 2019;18:383.PubMedPubMedCentral Toé KH, Mechan F, Tangena JA, Morris M, Solino J, Traore A, et al. Assessing the impact of the addition of pyriproxyfen on the durability of permethrin-treated bed nets in Burkina Faso: a compound-randomized controlled trial. Malar J. 2019;18:383.PubMedPubMedCentral
182.
go back to reference Haji KA, Khatib BO, Obi E, Dimoso K, Koenker H, Babalola S, et al. Monitoring the durability of the long-lasting insecticidal nets Olyset® and PermaNet® 2.0 in similar use environments in Zanzibar. Malar J. 2020;19:187.PubMedPubMedCentral Haji KA, Khatib BO, Obi E, Dimoso K, Koenker H, Babalola S, et al. Monitoring the durability of the long-lasting insecticidal nets Olyset® and PermaNet® 2.0 in similar use environments in Zanzibar. Malar J. 2020;19:187.PubMedPubMedCentral
183.
go back to reference Mansiangi P, Umesumbu S, Etewa I, Zandibeni J, Bafwa N, Blaufuss S, et al. Comparing the durability of the long-lasting insecticidal nets DawaPlus® 2.0 and DuraNet© in northwest Democratic Republic of Congo. Malar J. 2020;19:189.PubMedPubMedCentral Mansiangi P, Umesumbu S, Etewa I, Zandibeni J, Bafwa N, Blaufuss S, et al. Comparing the durability of the long-lasting insecticidal nets DawaPlus® 2.0 and DuraNet© in northwest Democratic Republic of Congo. Malar J. 2020;19:189.PubMedPubMedCentral
184.
go back to reference Obi E, Okoh F, Blaufuss S, Olapeju B, Akila J, Okoko OO, et al. Monitoring the physical and insecticidal durability of the long-lasting insecticidal net DawaPlus® 2.0 in three States in Nigeria. Malar J. 2020;19:124.PubMedPubMedCentral Obi E, Okoh F, Blaufuss S, Olapeju B, Akila J, Okoko OO, et al. Monitoring the physical and insecticidal durability of the long-lasting insecticidal net DawaPlus® 2.0 in three States in Nigeria. Malar J. 2020;19:124.PubMedPubMedCentral
185.
go back to reference Massue DJ, Moore SJ, Mageni ZD, Moore JD, Bradley J, Pigeon O, et al. Durability of Olyset campaign nets distributed between 2009 and 2011 in eight districts of Tanzania. Malar J. 2016;15:176.PubMedPubMedCentral Massue DJ, Moore SJ, Mageni ZD, Moore JD, Bradley J, Pigeon O, et al. Durability of Olyset campaign nets distributed between 2009 and 2011 in eight districts of Tanzania. Malar J. 2016;15:176.PubMedPubMedCentral
186.
go back to reference Mboma ZM, Overgaard HJ, Moore SJ, Bradley J, Moore J, Massue D, et al. Mosquito net coverage in years between mass distributions: a case study of Tanzania, 2013. Malar J. 2018;17:100.PubMedPubMedCentral Mboma ZM, Overgaard HJ, Moore SJ, Bradley J, Moore J, Massue D, et al. Mosquito net coverage in years between mass distributions: a case study of Tanzania, 2013. Malar J. 2018;17:100.PubMedPubMedCentral
189.
go back to reference Pennetier C, Bouraima A, Chandre F, Piameu M, Etang J, Rossignol M, et al. Efficacy of Olyset® Plus, a new long-lasting insecticidal net incorporating permethrin and piperonil-butoxide against multi-resistant malaria vectors. PLoS ONE. 2013;8:e75134.PubMedPubMedCentral Pennetier C, Bouraima A, Chandre F, Piameu M, Etang J, Rossignol M, et al. Efficacy of Olyset® Plus, a new long-lasting insecticidal net incorporating permethrin and piperonil-butoxide against multi-resistant malaria vectors. PLoS ONE. 2013;8:e75134.PubMedPubMedCentral
190.
go back to reference Corbel V, Chabi J, Dabire RK, Etang J, Nwane P, Pigeon O, et al. Field efficacy of a new mosaic long-lasting mosquito net (PermaNet® 3.0) against pyrethroid-resistant malaria vectors: a multi centre study in Western and Central Africa. Malar J. 2010;9:113.PubMedPubMedCentral Corbel V, Chabi J, Dabire RK, Etang J, Nwane P, Pigeon O, et al. Field efficacy of a new mosaic long-lasting mosquito net (PermaNet® 3.0) against pyrethroid-resistant malaria vectors: a multi centre study in Western and Central Africa. Malar J. 2010;9:113.PubMedPubMedCentral
191.
go back to reference Gould F. Testing Bt refuge strategies in the field. Nat Biotechnol. 2000;18:339–42. Gould F. Testing Bt refuge strategies in the field. Nat Biotechnol. 2000;18:339–42.
193.
go back to reference Mwangangi JM, Mbogo CM, Muturi EJ, Nzovu JG, Githuri JI, Yan G, et al. Spatial distribution and habitat characterisation of Anopheles larvae along the Kenyan coast. J Vector Borne Dis. 2007;44:44–51.PubMedPubMedCentral Mwangangi JM, Mbogo CM, Muturi EJ, Nzovu JG, Githuri JI, Yan G, et al. Spatial distribution and habitat characterisation of Anopheles larvae along the Kenyan coast. J Vector Borne Dis. 2007;44:44–51.PubMedPubMedCentral
194.
go back to reference Ayala D, Costantini C, Ose K, Kamden GC, Nkondjio CA, Agbor JP, et al. Habitat suitability and ecological niche profile of major malaria vectors in Cameroon. Malar J. 2009;8:307.PubMedPubMedCentral Ayala D, Costantini C, Ose K, Kamden GC, Nkondjio CA, Agbor JP, et al. Habitat suitability and ecological niche profile of major malaria vectors in Cameroon. Malar J. 2009;8:307.PubMedPubMedCentral
195.
go back to reference Coetzee M, Koekemoer LL. Molecular systematics and insecticide resistance in the major African malaria vector Anopheles funestus. Annu Rev Entomol. 2013;58:393–412.PubMed Coetzee M, Koekemoer LL. Molecular systematics and insecticide resistance in the major African malaria vector Anopheles funestus. Annu Rev Entomol. 2013;58:393–412.PubMed
196.
go back to reference Staedke SG, Gonahasa S, Dorsey G, Kamya MR, Maiteki-Sebuguzi C, Lynd A, et al. Effect of long-lasting insecticidal nets with and without piperonyl butoxide on malaria indicators in Uganda (LLINEUP): a pragmatic, cluster-randomised trial embedded in a national LLIN distribution campaign. Lancet. 2020;395:1292–303.PubMedPubMedCentral Staedke SG, Gonahasa S, Dorsey G, Kamya MR, Maiteki-Sebuguzi C, Lynd A, et al. Effect of long-lasting insecticidal nets with and without piperonyl butoxide on malaria indicators in Uganda (LLINEUP): a pragmatic, cluster-randomised trial embedded in a national LLIN distribution campaign. Lancet. 2020;395:1292–303.PubMedPubMedCentral
197.
go back to reference Huang F, Andow DA, Buschman LL. Success of the high-dose/refuge resistance management strategy after 15 years of Bt crop use in North America. Entomol Exp Appl. 2011;140:1–16. Huang F, Andow DA, Buschman LL. Success of the high-dose/refuge resistance management strategy after 15 years of Bt crop use in North America. Entomol Exp Appl. 2011;140:1–16.
198.
199.
go back to reference Yunta C, Grisales N, Nasz A, Hemmings K, Pignateli P, Voice M, et al. Pyriproxyfen is metabolized by P450s associated with pyrethroid resistance in An. gambiae. Biochem Mol Biol. 2016;78:50–7. Yunta C, Grisales N, Nasz A, Hemmings K, Pignateli P, Voice M, et al. Pyriproxyfen is metabolized by P450s associated with pyrethroid resistance in An. gambiae. Biochem Mol Biol. 2016;78:50–7.
200.
go back to reference WHO. Global plan for insecticide resistance management in malaria vectors. Geneva: World Health Organization; 2012. WHO. Global plan for insecticide resistance management in malaria vectors. Geneva: World Health Organization; 2012.
201.
go back to reference WHO. Technical basis for action against insecticide resistance: preserving the effectiveness of modern malaria vector control. Geneva: World Health Organization; 2011. WHO. Technical basis for action against insecticide resistance: preserving the effectiveness of modern malaria vector control. Geneva: World Health Organization; 2011.
202.
go back to reference Mnzava AP, Knox TB, Temu EA, Trett A, Fornadel C, Hemingway J, et al. Implementation of the global plan for insecticide resistance management in malaria vectors: progress, challenges and the way forward. Malar J. 2015;14:173.PubMedPubMedCentral Mnzava AP, Knox TB, Temu EA, Trett A, Fornadel C, Hemingway J, et al. Implementation of the global plan for insecticide resistance management in malaria vectors: progress, challenges and the way forward. Malar J. 2015;14:173.PubMedPubMedCentral
203.
go back to reference Shelton AM, Tand JD, Roush RT, Metz TD, Earle ED. Field tests on managing resistance to Bt-engineered plants. Nat Biotechnol. 2000;18:339–42.PubMed Shelton AM, Tand JD, Roush RT, Metz TD, Earle ED. Field tests on managing resistance to Bt-engineered plants. Nat Biotechnol. 2000;18:339–42.PubMed
204.
go back to reference Hemingway J, Penilla RP, Rodriguez AD, Jams BM, Edge W, Rogers H, et al. Resistance management strategies in malaria vector mosquito control. A large-scale field trial in Southern Mexico. Pestic Sci. 1997;51:375–82. Hemingway J, Penilla RP, Rodriguez AD, Jams BM, Edge W, Rogers H, et al. Resistance management strategies in malaria vector mosquito control. A large-scale field trial in Southern Mexico. Pestic Sci. 1997;51:375–82.
205.
go back to reference West PA, Protopopoff N, Wright A, Kijavu Z, Tigererwa R, Mosha F, et al. Indoor residual spraying in combination with insecticide-treated nets compared to insecticide-treated nets alone for protection against malaria: a cluster randomised trial in Tanzania. PLoS Med. 2014;11:e1001630.PubMedPubMedCentral West PA, Protopopoff N, Wright A, Kijavu Z, Tigererwa R, Mosha F, et al. Indoor residual spraying in combination with insecticide-treated nets compared to insecticide-treated nets alone for protection against malaria: a cluster randomised trial in Tanzania. PLoS Med. 2014;11:e1001630.PubMedPubMedCentral
206.
go back to reference WHO. Guidance for countries on combining indoor residual spraying and long-lasting insecticidal nets. Geneva: World Health Organization; 2014. WHO. Guidance for countries on combining indoor residual spraying and long-lasting insecticidal nets. Geneva: World Health Organization; 2014.
207.
go back to reference Masum H, Shah R, Schroeder K, Daar AS, Singer PA. Africa’s largest long-lasting insecticide-treated net producer: lessons from A to Z Textiles. BMC Int Health Hum Rights. 2010;10:S6.PubMedPubMedCentral Masum H, Shah R, Schroeder K, Daar AS, Singer PA. Africa’s largest long-lasting insecticide-treated net producer: lessons from A to Z Textiles. BMC Int Health Hum Rights. 2010;10:S6.PubMedPubMedCentral
209.
go back to reference Bayoh MN, Mathias DK, Odiere MR, Mutuku FM, Kamau L, Gimnig J, et al. Anopheles gambiae: historical population decline associated with regional istribution of insecticide-treated bed nets in western Nyanza Province, Kenya. Malar J. 2010;9:62.PubMedPubMedCentral Bayoh MN, Mathias DK, Odiere MR, Mutuku FM, Kamau L, Gimnig J, et al. Anopheles gambiae: historical population decline associated with regional istribution of insecticide-treated bed nets in western Nyanza Province, Kenya. Malar J. 2010;9:62.PubMedPubMedCentral
210.
go back to reference Gillies M, Smith A. The effect of a residual house spraying campaign in East Africa on species balance in the Anopheles funestus group: the replacement of Anopheles funestus by Anopheles rivulorum. Bull Entomol Res. 1960;51:243–53. Gillies M, Smith A. The effect of a residual house spraying campaign in East Africa on species balance in the Anopheles funestus group: the replacement of Anopheles funestus by Anopheles rivulorum. Bull Entomol Res. 1960;51:243–53.
211.
go back to reference McCann RS, Ochomo E, Bayoh MN, Bulule JM, Hamel MJ, Gimnig J, et al. Reemergence of Anopheles funestus as a vector of Plasmodium falciparum in western Kenya after long-term implementation of insecticide-treated bed nets. Am J Trop Med Hyg. 2014;90:597–604.PubMedPubMedCentral McCann RS, Ochomo E, Bayoh MN, Bulule JM, Hamel MJ, Gimnig J, et al. Reemergence of Anopheles funestus as a vector of Plasmodium falciparum in western Kenya after long-term implementation of insecticide-treated bed nets. Am J Trop Med Hyg. 2014;90:597–604.PubMedPubMedCentral
Metadata
Title
The fabric of life: what if mosquito nets were durable and widely available but insecticide-free?
Author
Fredros Okumu
Publication date
01-12-2020
Publisher
BioMed Central
Keyword
Malaria
Published in
Malaria Journal / Issue 1/2020
Electronic ISSN: 1475-2875
DOI
https://doi.org/10.1186/s12936-020-03321-6

Other articles of this Issue 1/2020

Malaria Journal 1/2020 Go to the issue