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Published in: BMC Public Health 1/2018

Open Access 01-12-2018 | Study protocol

Protocol for evaluating the impact of a national school policy on physical activity levels in Danish children and adolescents: the PHASAR study - a natural experiment

Authors: Natascha Holbæk Pedersen, Sofie Koch, Kristian Traberg Larsen, Peter Lund Kristensen, Jens Troelsen, Niels Christian Møller, Jan Christian Brønd, Jacob von Bornemann Hjelmborg, Søren Brage, Anders Grøntved

Published in: BMC Public Health | Issue 1/2018

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Abstract

Background

In 2014 the Danish Government introduced a wide-ranging school reform that applies to all public schools in Denmark. The reform involves changes in several aspects of the school structure and content. In a physical activity promotion perspective, a distinctive feature of the school reform is that it has become mandatory to integrate an average of 45 min of daily physical activity in the regular school day. The overarching objective of the PHASAR study is to evaluate the implementation and effect of this ambitious policy-driven physical activity promotion initiative on physical activity and overweight. This paper describes in detail the study protocol.

Methods

The evaluation is divided into a quantitative effect evaluation and a combined quantitative and qualitative process evaluation. A total of 31 schools are enrolled in the PHASAR study including more than 2,000 school-aged children. Objectively measured physical activity data are obtained in the PHASAR study in 2017/18 and compared to repeated cross sectional data collected in four historical school-based studies from 1998 to 2012. Body mass index data from 2012 to 2018 will be collected from The Child Database, which includes repeated cross-sectional assessments on approximately 100,000 children annually. In the absence of a control group, interrupted time-series analysis will be used to evaluate pre- and post-reform physical activity and body mass index levels and trends. A characterization of the school environment for physical activity promotion on a political, environmental, organizational and individual level and school implementation processes will be conducted to evaluate the implementation process. Data will be collected using interviews, surveys, document analyses and observations.

Discussion

The PHASAR study is a rare opportunity to evaluate the effectiveness of a nation-wide policy-driven school-based physical activity promotion initiative. The use of objectively measured pre- and post-reform physical activity and body mass index data combined with a characterization of the school implementation processes for physical activity promotion will provide a comprehensive source to evaluate the school reform. The study findings have the potential to influence national and international policy makers, health professionals and school staff.
Literature
1.
go back to reference Hallal PC, Andersen LB, Bull FC, Guthold R, Haskell W, Ekelund U. Global physical activity levels: surveillance progress, pitfalls, and prospects. Lancet. 2012;380(9838):247–57.CrossRef Hallal PC, Andersen LB, Bull FC, Guthold R, Haskell W, Ekelund U. Global physical activity levels: surveillance progress, pitfalls, and prospects. Lancet. 2012;380(9838):247–57.CrossRef
2.
go back to reference Lim SS, Vos T, Flaxman AD, Danaei G, Shibuya K, Adair-Rohani H, et al. A comparative risk assessment of burden of disease and injury attributable to 67 risk factors and risk factor clusters in 21 regions, 1990–2010: a systematic analysis for the global burden of disease study 2010. Lancet. 2012;380(9859):2224–60.CrossRef Lim SS, Vos T, Flaxman AD, Danaei G, Shibuya K, Adair-Rohani H, et al. A comparative risk assessment of burden of disease and injury attributable to 67 risk factors and risk factor clusters in 21 regions, 1990–2010: a systematic analysis for the global burden of disease study 2010. Lancet. 2012;380(9859):2224–60.CrossRef
3.
go back to reference Lubans D, Richards J, Hillman C, Faulkner G, Beauchamp M, Nilsson M, et al. Physical Activity for Cognitive and Mental Health in Youth: A Systematic Review of Mechanisms. Pediatrics. 2016;138(3):1-13.CrossRef Lubans D, Richards J, Hillman C, Faulkner G, Beauchamp M, Nilsson M, et al. Physical Activity for Cognitive and Mental Health in Youth: A Systematic Review of Mechanisms. Pediatrics. 2016;138(3):1-13.CrossRef
4.
go back to reference WHO. Global status report on noncommunicable diseases. 2014. WHO. Global status report on noncommunicable diseases. 2014.
5.
go back to reference NCD Risk Factor Collaboration. Worldwide trends in body-mass index, underweight, overweight, and obesity from 1975 to 2016: a pooled analysis of 2416 population-based measurement studies in 128.9 million children, adolescents, and adults. Lancet. 2017;390(10113):2627–42.CrossRef NCD Risk Factor Collaboration. Worldwide trends in body-mass index, underweight, overweight, and obesity from 1975 to 2016: a pooled analysis of 2416 population-based measurement studies in 128.9 million children, adolescents, and adults. Lancet. 2017;390(10113):2627–42.CrossRef
6.
go back to reference Cohen D, Scott M, Frank Zhen W, McKenzie TL, Porter D. School design and physical activity among middle school girls. J Phys Act Health. 2008;5(5):719–31.CrossRef Cohen D, Scott M, Frank Zhen W, McKenzie TL, Porter D. School design and physical activity among middle school girls. J Phys Act Health. 2008;5(5):719–31.CrossRef
7.
go back to reference Ishii K, Shibata A, Sato M, Oka K. Recess physical activity and Percieved school environment among elementary school children. Int J Environ Res Public Health. 2014;11:7195–206.CrossRef Ishii K, Shibata A, Sato M, Oka K. Recess physical activity and Percieved school environment among elementary school children. Int J Environ Res Public Health. 2014;11:7195–206.CrossRef
8.
go back to reference Kristensen PL, Wedderkopp N, Møller NC, Andersen LB, Bai CN, Froberg K. Tracking and prevalence of cardiovascular disease risk factors across socio-economic classes: A longitudinal substudy of the European Youth Heart Study. BMC Public Health. 2006;6:20.CrossRef Kristensen PL, Wedderkopp N, Møller NC, Andersen LB, Bai CN, Froberg K. Tracking and prevalence of cardiovascular disease risk factors across socio-economic classes: A longitudinal substudy of the European Youth Heart Study. BMC Public Health. 2006;6:20.CrossRef
9.
go back to reference Gladwin CP, Church J, Plotnikoff RC. Public policy processes and getting physical activity into alberta's urban schools. Canadian J Public Health. 2008;99(4):332–8. Gladwin CP, Church J, Plotnikoff RC. Public policy processes and getting physical activity into alberta's urban schools. Canadian J Public Health. 2008;99(4):332–8.
10.
go back to reference Borde R, Smith JJ, Sutherland R, Nathan N, Lubans DR. Methodological considerations and impact of school-based interventions on objectively measured physical activity in adolescents: a systematic review and meta-analysis. Obes Rev. 2017;18(4):476–90.CrossRef Borde R, Smith JJ, Sutherland R, Nathan N, Lubans DR. Methodological considerations and impact of school-based interventions on objectively measured physical activity in adolescents: a systematic review and meta-analysis. Obes Rev. 2017;18(4):476–90.CrossRef
11.
go back to reference Mears R, Jago R. Effectiveness of after-school interventions at increasing moderate-to-vigorous physical activity levels in 5- to 18-year olds: a systematic review and meta-analysis. Br J Sports Med. 2016;50(21):1315.CrossRef Mears R, Jago R. Effectiveness of after-school interventions at increasing moderate-to-vigorous physical activity levels in 5- to 18-year olds: a systematic review and meta-analysis. Br J Sports Med. 2016;50(21):1315.CrossRef
12.
go back to reference Van Sluijs EM, McMinn AM, Griffin SJ. Effectiveness of interventions topromote physical activity in children and adolescents: systematic review of controlled trials. Br J Sports Med. 2008;42(8):653.PubMed Van Sluijs EM, McMinn AM, Griffin SJ. Effectiveness of interventions topromote physical activity in children and adolescents: systematic review of controlled trials. Br J Sports Med. 2008;42(8):653.PubMed
13.
go back to reference Sims J, Scarborough P, Foster C. The effectiveness of interventions on sustained childhood physical activity: a systematic review and meta-analysis of controlled studies. PLoS One. 2015;10(7):e0132935.CrossRef Sims J, Scarborough P, Foster C. The effectiveness of interventions on sustained childhood physical activity: a systematic review and meta-analysis of controlled studies. PLoS One. 2015;10(7):e0132935.CrossRef
14.
go back to reference Undervisningsministeriet. Bekendtgørelse af lov om folkeskolen. LBK nr. 1510, §15. København; 2017. Undervisningsministeriet. Bekendtgørelse af lov om folkeskolen. LBK nr. 1510, §15. København; 2017.
15.
go back to reference Kontopantelis E, Doran T, Springate DA, Buchan I, Reeves D. Regression based quasi-experimental approach when randomisation is not an option: interrupted time series analysis. BMJ. 2015;350:h2750.CrossRef Kontopantelis E, Doran T, Springate DA, Buchan I, Reeves D. Regression based quasi-experimental approach when randomisation is not an option: interrupted time series analysis. BMJ. 2015;350:h2750.CrossRef
16.
go back to reference Campbell SM, Reeves D, Kontopantelis E, Sibbald B, Roland M. Effects of pay for performance on the quality of primary care in England. N Engl J Med. 2009;361:368–78.CrossRef Campbell SM, Reeves D, Kontopantelis E, Sibbald B, Roland M. Effects of pay for performance on the quality of primary care in England. N Engl J Med. 2009;361:368–78.CrossRef
17.
go back to reference Dayer MJ, Jones S, Prendergast B, Baddour LM, Lockhart PB, Thornhill MH. Incidence of infective endocarditis in England, 2000-13: a secular trend, interrupted time-series analysis. Lancet. 2015;385(9974):1219–28.CrossRef Dayer MJ, Jones S, Prendergast B, Baddour LM, Lockhart PB, Thornhill MH. Incidence of infective endocarditis in England, 2000-13: a secular trend, interrupted time-series analysis. Lancet. 2015;385(9974):1219–28.CrossRef
18.
go back to reference Grijalva CG, Nuorti JP, Arbogast PG, Martin SW, Edwards KM, Griffin MR. Decline in pneumonia admissions after routine childhood immunisation with pneumococcal conjugate vaccine in the USA: a time-series analysis. Lancet. 2007;369:1179–86.CrossRef Grijalva CG, Nuorti JP, Arbogast PG, Martin SW, Edwards KM, Griffin MR. Decline in pneumonia admissions after routine childhood immunisation with pneumococcal conjugate vaccine in the USA: a time-series analysis. Lancet. 2007;369:1179–86.CrossRef
19.
go back to reference Grundy C, Steinbach R, Edwards P, Green J, Armstrong B, Wilkinson P. Effect of 20 mph traffic speed zones on road injuries in London, 1986-2006: controlled interrupted time series analysis. BMJ. 2009;339:b4469.CrossRef Grundy C, Steinbach R, Edwards P, Green J, Armstrong B, Wilkinson P. Effect of 20 mph traffic speed zones on road injuries in London, 1986-2006: controlled interrupted time series analysis. BMJ. 2009;339:b4469.CrossRef
20.
go back to reference Welk GJ, Corbin CB, Dale D. Measurement issues in the assessment of physical activity in children. Res Q Exerc Sport. 2000;71(2 Suppl):S59–73.CrossRef Welk GJ, Corbin CB, Dale D. Measurement issues in the assessment of physical activity in children. Res Q Exerc Sport. 2000;71(2 Suppl):S59–73.CrossRef
21.
go back to reference Wedderkopp N, Jespersen E, Franz C, Klakk H, Heidemann M, Christiansen C, et al. Study protocol. The Childhood Health, Activity, and Motor Performance School Study Denmark (The CHAMPS-study DK). BMC Pediatr. 2012;12:128.CrossRef Wedderkopp N, Jespersen E, Franz C, Klakk H, Heidemann M, Christiansen C, et al. Study protocol. The Childhood Health, Activity, and Motor Performance School Study Denmark (The CHAMPS-study DK). BMC Pediatr. 2012;12:128.CrossRef
22.
go back to reference Riddoch C, Edwards D, Page A, Froberg K, Andersen SA, Wedderkopp N. The European youth heart study - cardiovascular disease risk factors in children: rationale, aims, study design, and validation of methods. J Phys Act Health. 2005;2.CrossRef Riddoch C, Edwards D, Page A, Froberg K, Andersen SA, Wedderkopp N. The European youth heart study - cardiovascular disease risk factors in children: rationale, aims, study design, and validation of methods. J Phys Act Health. 2005;2.CrossRef
23.
go back to reference Toftager M, Christiansen LB, Kristensen PL, Troelsen J. SPACE for physical activity - a multicomponent intervention study: study design and baseline findings from a cluster randomized controlled trial. BMC Public Health. 2011;11(1):777.CrossRef Toftager M, Christiansen LB, Kristensen PL, Troelsen J. SPACE for physical activity - a multicomponent intervention study: study design and baseline findings from a cluster randomized controlled trial. BMC Public Health. 2011;11(1):777.CrossRef
24.
go back to reference Klinker CD, Schipperijn J, Toftager M, Kerr J, Troelsen J. When cities move children: development of a new methodology to assess context-specific physical activity behaviour among children and adolescents using accelerometers and GPS. Health & Place. 2015;31:90–9.CrossRef Klinker CD, Schipperijn J, Toftager M, Kerr J, Troelsen J. When cities move children: development of a new methodology to assess context-specific physical activity behaviour among children and adolescents using accelerometers and GPS. Health & Place. 2015;31:90–9.CrossRef
25.
go back to reference Kristensen PL, Korsholm L, Møller NC, Wedderkopp N, Andersen LB, Froberg K. Sources of variation in habitual physical activity of children and adolescents: the European youth heart study. Medicin and science in Sports. 2007;18(3):298–308. Kristensen PL, Korsholm L, Møller NC, Wedderkopp N, Andersen LB, Froberg K. Sources of variation in habitual physical activity of children and adolescents: the European youth heart study. Medicin and science in Sports. 2007;18(3):298–308.
26.
go back to reference Ekelund U, Sjostrom M, Yngve A, Poortvliet E, Nilsson A, Froberg K. Physical activity assessed by activity monitor and doubly labeled water in children. Med Sci Sports Exerc. 2001;33(2):275–81.CrossRef Ekelund U, Sjostrom M, Yngve A, Poortvliet E, Nilsson A, Froberg K. Physical activity assessed by activity monitor and doubly labeled water in children. Med Sci Sports Exerc. 2001;33(2):275–81.CrossRef
27.
go back to reference Puyau MR, Adolph AL, Vohra FA, Butte NF. Validation and calibration of physical activity monitors in children. Obes Res. 2002;10(3):150–7.CrossRef Puyau MR, Adolph AL, Vohra FA, Butte NF. Validation and calibration of physical activity monitors in children. Obes Res. 2002;10(3):150–7.CrossRef
28.
go back to reference Brønd JC, Arvidsson D. Sampling frequency affects the processing of ActiGraph raw acceleration data to activity counts. J Appl Physiol (1985). 2015;120(3):362–9.CrossRef Brønd JC, Arvidsson D. Sampling frequency affects the processing of ActiGraph raw acceleration data to activity counts. J Appl Physiol (1985). 2015;120(3):362–9.CrossRef
29.
go back to reference Durlak JA, DuPre EP. Implementation matters: a review of research on the influence of implementation on program outcomes and the factors affecting implementation. Am J Community Psychol. 2008;41(3–4):327–50.CrossRef Durlak JA, DuPre EP. Implementation matters: a review of research on the influence of implementation on program outcomes and the factors affecting implementation. Am J Community Psychol. 2008;41(3–4):327–50.CrossRef
30.
go back to reference Feldstein AC, Glasgow RE. A practical, robust implementation and sustainability model (PRISM) for integrating research findings into practice. Jt Comm J Qual Patient Saf. 2008;34(4):228–43.CrossRef Feldstein AC, Glasgow RE. A practical, robust implementation and sustainability model (PRISM) for integrating research findings into practice. Jt Comm J Qual Patient Saf. 2008;34(4):228–43.CrossRef
31.
go back to reference Brownson RC, Hoehner CM, Day K, Forsyth A, Sallis JF. Measuring the Built Environment for Physical Activity: State of the Science. Am Journal Prev Med. 2009;36(4, Supplement):S99–S123.e12.CrossRef Brownson RC, Hoehner CM, Day K, Forsyth A, Sallis JF. Measuring the Built Environment for Physical Activity: State of the Science. Am Journal Prev Med. 2009;36(4, Supplement):S99–S123.e12.CrossRef
32.
go back to reference Sallis JF, Cervero RB, Ascher W, Henderson KA, Kraft MK, Kerr J. An ecological approach to creating active living communities. Annu Rev Public Health. 2006;27:297–322.CrossRef Sallis JF, Cervero RB, Ascher W, Henderson KA, Kraft MK, Kerr J. An ecological approach to creating active living communities. Annu Rev Public Health. 2006;27:297–322.CrossRef
33.
go back to reference Jones NR, Jones A, van Sluijs EMF, Panter J, Harrison F, Griffin SJ. School environments and physical activity: the development and testing of an audit tool. Health Place. 2010;16(5):776–83.CrossRef Jones NR, Jones A, van Sluijs EMF, Panter J, Harrison F, Griffin SJ. School environments and physical activity: the development and testing of an audit tool. Health Place. 2010;16(5):776–83.CrossRef
34.
go back to reference Cervero R, Kockelman K. Travel demand and the 3Ds: density, diversity, and design. Transp Res Part D: Transp Environ. 1997;2(3):199–219.CrossRef Cervero R, Kockelman K. Travel demand and the 3Ds: density, diversity, and design. Transp Res Part D: Transp Environ. 1997;2(3):199–219.CrossRef
35.
go back to reference Nielsen G, Taylor R, Williams S, Mann J. Permanent play facilities in school playgrounds as a determinant of children's activity. J Phys Act Health. 2010;7(4):490–6.CrossRef Nielsen G, Taylor R, Williams S, Mann J. Permanent play facilities in school playgrounds as a determinant of children's activity. J Phys Act Health. 2010;7(4):490–6.CrossRef
36.
go back to reference Ministry of Education Taiwan. National Sports Act., Planning Division, Sports Administration, Chapter 2: Sports Education in Schools. Taiwan; 2018. Ministry of Education Taiwan. National Sports Act., Planning Division, Sports Administration, Chapter 2: Sports Education in Schools. Taiwan; 2018.
38.
go back to reference Government of Hungary. Act CXC of 2011 on National Public Education. Budapest: Hungarian Educational Authority; 2011. Government of Hungary. Act CXC of 2011 on National Public Education. Budapest: Hungarian Educational Authority; 2011.
39.
go back to reference Chesham RA, Booth JN, Sweeney EL, Ryde GC, Gorely T, Brooks NE, et al. The daily mile makes primary school children more active, less sedentary and improves their fitness and body composition: a quasi-experimental pilot study. BMC Med. 2018;16(1):64.CrossRef Chesham RA, Booth JN, Sweeney EL, Ryde GC, Gorely T, Brooks NE, et al. The daily mile makes primary school children more active, less sedentary and improves their fitness and body composition: a quasi-experimental pilot study. BMC Med. 2018;16(1):64.CrossRef
40.
go back to reference Olstad DL, Campbell EJ, Raine KD, Nykiforuk CIJ. A multiple case history and systematic review of adoption, diffusion, implementation and impact of provincial daily physical activity policies in Canadian schools. BMC Public Health. 2015;15(1):385.CrossRef Olstad DL, Campbell EJ, Raine KD, Nykiforuk CIJ. A multiple case history and systematic review of adoption, diffusion, implementation and impact of provincial daily physical activity policies in Canadian schools. BMC Public Health. 2015;15(1):385.CrossRef
41.
go back to reference Carlson JA, Sallis JF, Chriqui JF, Schneider L, McDermid LC, Agron P. State policies about physical activity minutes in physical education or during school. J Sch Health. 2013;83(3):150–6.CrossRef Carlson JA, Sallis JF, Chriqui JF, Schneider L, McDermid LC, Agron P. State policies about physical activity minutes in physical education or during school. J Sch Health. 2013;83(3):150–6.CrossRef
42.
go back to reference Robertson-Wilson JE, Dargavel MD, Bryden PJ, Giles-Corti B. Physical activity policies and legislation in schools: a systematic review. Am J Prev Med. 2012;43(6):643–9.CrossRef Robertson-Wilson JE, Dargavel MD, Bryden PJ, Giles-Corti B. Physical activity policies and legislation in schools: a systematic review. Am J Prev Med. 2012;43(6):643–9.CrossRef
43.
go back to reference Buffington A, McKee C, Ragsdale K, Blanchard TC, Baggett D, Southward LH. Impact of Mississippi healthy students act of 2007 on district- and school-level health policies: school Officials’ perspectives. J Sch Health. 2014;84(5):285–93.CrossRef Buffington A, McKee C, Ragsdale K, Blanchard TC, Baggett D, Southward LH. Impact of Mississippi healthy students act of 2007 on district- and school-level health policies: school Officials’ perspectives. J Sch Health. 2014;84(5):285–93.CrossRef
44.
go back to reference Watts AW, Mâsse LC, Naylor P-J. Changes to the school food and physical activity environment after guideline implementation in British Columbia, Canada. Int J Behav Nutr Phys Act. 2014;11(1):50.CrossRef Watts AW, Mâsse LC, Naylor P-J. Changes to the school food and physical activity environment after guideline implementation in British Columbia, Canada. Int J Behav Nutr Phys Act. 2014;11(1):50.CrossRef
45.
go back to reference Stone MR, Faulkner GEJ, Zeglen-Hunt L, Bonne JC. The daily physical activity (DPA) policy in Ontario: is it working? An examination using accelerometry-measured physical activity data. Canadian J Public Health. 2012;103(3):170–4. Stone MR, Faulkner GEJ, Zeglen-Hunt L, Bonne JC. The daily physical activity (DPA) policy in Ontario: is it working? An examination using accelerometry-measured physical activity data. Canadian J Public Health. 2012;103(3):170–4.
46.
go back to reference Allison KR, Vu-Nguyen K, Ng B, Schoueri-Mychasiw N, Dwyer JJM, Manson H, et al. Evaluation of daily physical activity (DPA) policy implementation in Ontario: surveys of elementary school administrators and teachers. BMC Public Health. 2016;16(1):746.CrossRef Allison KR, Vu-Nguyen K, Ng B, Schoueri-Mychasiw N, Dwyer JJM, Manson H, et al. Evaluation of daily physical activity (DPA) policy implementation in Ontario: surveys of elementary school administrators and teachers. BMC Public Health. 2016;16(1):746.CrossRef
47.
go back to reference Harris AD, McGregor JC, Perencevich EN, Furuno JP, Zhu J, Peterson DE, et al. The use and interpretation of quasi-experimental studies in medical informatics. J Am Med Inform Assoc. 2006;13(1):16–23.CrossRef Harris AD, McGregor JC, Perencevich EN, Furuno JP, Zhu J, Peterson DE, et al. The use and interpretation of quasi-experimental studies in medical informatics. J Am Med Inform Assoc. 2006;13(1):16–23.CrossRef
48.
go back to reference Van Kann DH, Jansen MW, de Vries SI, de Vries NK, Kremers SP. Active living: development and quasi-experimental evaluation of a school-centered physical activity intervention for primary school children. BMC Public Health. 2015;15:1315.CrossRef Van Kann DH, Jansen MW, de Vries SI, de Vries NK, Kremers SP. Active living: development and quasi-experimental evaluation of a school-centered physical activity intervention for primary school children. BMC Public Health. 2015;15:1315.CrossRef
49.
go back to reference Frederiksen M, Gundelach P, Nielsen R. Mixed methods-forskning. Hans Reitzels Forlag: Copenhagen; 2014. Frederiksen M, Gundelach P, Nielsen R. Mixed methods-forskning. Hans Reitzels Forlag: Copenhagen; 2014.
Metadata
Title
Protocol for evaluating the impact of a national school policy on physical activity levels in Danish children and adolescents: the PHASAR study - a natural experiment
Authors
Natascha Holbæk Pedersen
Sofie Koch
Kristian Traberg Larsen
Peter Lund Kristensen
Jens Troelsen
Niels Christian Møller
Jan Christian Brønd
Jacob von Bornemann Hjelmborg
Søren Brage
Anders Grøntved
Publication date
01-12-2018
Publisher
BioMed Central
Published in
BMC Public Health / Issue 1/2018
Electronic ISSN: 1471-2458
DOI
https://doi.org/10.1186/s12889-018-6144-8

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