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Published in: European Journal of Epidemiology 9/2008

01-09-2008 | Methods

Does population mixing measure infectious exposure in children at the community level?

Authors: John C. Taylor, Graham R. Law, Paul J. Boyle, Zhiqiang Feng, Mark S. Gilthorpe, Roger C. Parslow, Gavin Rudge, Richard G. Feltbower

Published in: European Journal of Epidemiology | Issue 9/2008

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Abstract

Epidemiological studies focusing on the etiology of childhood chronic diseases have used population mixing as a proxy for the level of infection circulating in a community. We compared different measures of population mixing (based on residential migration and commuting) and other demographic variables, derived from the United Kingdom Census, with hospital inpatient data on infections from two Government Office Regions in England (Eastern and the West Midlands) to inform the development of an infectious disease proxy for future epidemiological studies. The association between rates of infection and the population mixing measures was assessed, using incidence rate ratios across census areas, from negative binomial regression. Commuting distance demonstrated the most consistent association with admissions for infections across the two regions; areas with a higher median distance travelled by commuters leaving the area having a lower rate of hospital admissions for infections. Deprived areas and densely populated areas had a raised rate of admissions for infections. Assuming hospital admissions are a reliable indicator of common infection rates, the results from this study suggest that commuting distance is a consistent measure of population mixing in relation to infectious disease and deprivation and population density are reliable demographic proxies for infectious exposure. Areas that exhibit high levels of population mixing do not necessarily possess raised rates of hospital admissions for infectious disease.
Literature
2.
go back to reference Greaves MF, Alexander FE. An infectious etiology for common acute lymphoblastic leukemia in childhood? Leukemia. 1993;7:349–60.PubMed Greaves MF, Alexander FE. An infectious etiology for common acute lymphoblastic leukemia in childhood? Leukemia. 1993;7:349–60.PubMed
4.
go back to reference Infections and vaccinations as risk factors for childhood type I (insulin-dependent) diabetes mellitus: a multicentre case-control investigation. EURODIAB Substudy 2 Study Group. Diabetologia. 2000;43:47–53. doi:10.1007/s001250050006 Infections and vaccinations as risk factors for childhood type I (insulin-dependent) diabetes mellitus: a multicentre case-control investigation. EURODIAB Substudy 2 Study Group. Diabetologia. 2000;43:47–53. doi:10.​1007/​s001250050006
11.
12.
go back to reference Stiller CA, Boyle PJ. Effect of population mixing and socioeconomic status in England and Wales, 1979–85, on lymphoblastic leukaemia in children. BMJ. 1996;313:1297–300.PubMed Stiller CA, Boyle PJ. Effect of population mixing and socioeconomic status in England and Wales, 1979–85, on lymphoblastic leukaemia in children. BMJ. 1996;313:1297–300.PubMed
16.
go back to reference Olowokure B, Spencer NJ, Hawker JI, Blair I, Smith RL. Invasive Haemophilus influenzae disease: an ecological study of sociodemographic risk factors before and after the introduction of Hib conjugate vaccine. Eur J Epidemiol. 2003;18:363–7. doi:10.1023/A:1023606501705.PubMedCrossRef Olowokure B, Spencer NJ, Hawker JI, Blair I, Smith RL. Invasive Haemophilus influenzae disease: an ecological study of sociodemographic risk factors before and after the introduction of Hib conjugate vaccine. Eur J Epidemiol. 2003;18:363–7. doi:10.​1023/​A:​1023606501705.PubMedCrossRef
17.
go back to reference World Health Organization. International statistical classification of diseases and related health problems-10th revision (ICD-10). Geneva; 1992. World Health Organization. International statistical classification of diseases and related health problems-10th revision (ICD-10). Geneva; 1992.
18.
go back to reference Shannon CE. A mathematical theory of communication. Bell Syst Tech J. 1948;27:379–423. Shannon CE. A mathematical theory of communication. Bell Syst Tech J. 1948;27:379–423.
19.
go back to reference Townsend P, Phillimore P, Beattie A. Health and deprivation: inequality and the North. London, United Kingdom: Croom Helm; 1988. Townsend P, Phillimore P, Beattie A. Health and deprivation: inequality and the North. London, United Kingdom: Croom Helm; 1988.
21.
go back to reference Sethi D, Cumberland P, Hudson MJ, Rodrigues LC, Wheeler JG, Roberts JA, et al. A study of infectious intestinal disease in England: risk factors associated with group A rotavirus in children. Epidemiol Infect. 2001;126:63–70.PubMedCrossRef Sethi D, Cumberland P, Hudson MJ, Rodrigues LC, Wheeler JG, Roberts JA, et al. A study of infectious intestinal disease in England: risk factors associated with group A rotavirus in children. Epidemiol Infect. 2001;126:63–70.PubMedCrossRef
22.
go back to reference Petridou E, Revinthi K, Alexander FE, Haidas S, Koliouskas D, Kosmidis H, et al. Space-time clustering of childhood leukaemia in Greece: evidence supporting a viral aetiology. Br J Cancer. 1996;73:1278–83.PubMed Petridou E, Revinthi K, Alexander FE, Haidas S, Koliouskas D, Kosmidis H, et al. Space-time clustering of childhood leukaemia in Greece: evidence supporting a viral aetiology. Br J Cancer. 1996;73:1278–83.PubMed
26.
go back to reference Wartenberg D, Schneider D, Brown S. Childhood leukaemia incidence and the population mixing hypothesis in US SEER data. Br J Cancer. 2004;90:1771–6.PubMed Wartenberg D, Schneider D, Brown S. Childhood leukaemia incidence and the population mixing hypothesis in US SEER data. Br J Cancer. 2004;90:1771–6.PubMed
27.
go back to reference Feltbower RG, Manda SO, Gilthorpe MS, Greaves MF, Parslow RC, Kinsey SE, et al. Detecting small-area similarities in the epidemiology of childhood acute lymphoblastic leukemia and diabetes mellitus, type 1: a Bayesian approach. Am J Epidemiol. 2005;161:1168–80. doi:10.1093/aje/kwi146.PubMedCrossRef Feltbower RG, Manda SO, Gilthorpe MS, Greaves MF, Parslow RC, Kinsey SE, et al. Detecting small-area similarities in the epidemiology of childhood acute lymphoblastic leukemia and diabetes mellitus, type 1: a Bayesian approach. Am J Epidemiol. 2005;161:1168–80. doi:10.​1093/​aje/​kwi146.PubMedCrossRef
28.
go back to reference Kinlen LJ, Hudson CM, Stiller CA. Contacts between adults as evidence for an infective origin of childhood leukaemia: an explanation for the excess near nuclear establishments in west Berkshire? Br J Cancer. 1991;64:549–54.PubMed Kinlen LJ, Hudson CM, Stiller CA. Contacts between adults as evidence for an infective origin of childhood leukaemia: an explanation for the excess near nuclear establishments in west Berkshire? Br J Cancer. 1991;64:549–54.PubMed
29.
Metadata
Title
Does population mixing measure infectious exposure in children at the community level?
Authors
John C. Taylor
Graham R. Law
Paul J. Boyle
Zhiqiang Feng
Mark S. Gilthorpe
Roger C. Parslow
Gavin Rudge
Richard G. Feltbower
Publication date
01-09-2008
Publisher
Springer Netherlands
Published in
European Journal of Epidemiology / Issue 9/2008
Print ISSN: 0393-2990
Electronic ISSN: 1573-7284
DOI
https://doi.org/10.1007/s10654-008-9272-0

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