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The Effectiveness of Urban Design and Land Use and Transport Policies and Practices to Increase Physical Activity: A Systematic Review.城市设计、土地利用及交通政策与实践对增加身体活动的有效性:一项系统综述
J Phys Act Health. 2006 Feb;3(s1):S55-S76. doi: 10.1123/jpah.3.s1.s55.
2
Physical activity counseling in primary care: Insights from public health and behavioral economics.初级保健中的身体活动咨询:公共卫生和行为经济学的观点。
CA Cancer J Clin. 2017 May 6;67(3):233-244. doi: 10.3322/caac.21394. Epub 2017 Feb 15.
3
Scaling up physical activity interventions worldwide: stepping up to larger and smarter approaches to get people moving.在全球范围内扩大身体活动干预措施:采取更大规模、更明智的方法促使人们动起来。
Lancet. 2016 Sep 24;388(10051):1337-48. doi: 10.1016/S0140-6736(16)30728-0. Epub 2016 Jul 28.
4
Progress in physical activity over the Olympic quadrennium.四年来体育锻炼的进展。
Lancet. 2016 Sep 24;388(10051):1325-36. doi: 10.1016/S0140-6736(16)30581-5. Epub 2016 Jul 28.
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The Effect of Light Rail Transit on Physical Activity: Design and Methods of the Travel-Related Activity in Neighborhoods Study.轻轨交通对身体活动的影响:邻里出行相关活动研究的设计与方法。
Front Public Health. 2016 Jun 9;4:103. doi: 10.3389/fpubh.2016.00103. eCollection 2016.
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Statistical models for multilevel skewed physical activity data in health research and behavioral medicine.健康研究和行为医学中多水平偏态身体活动数据的统计模型。
Health Psychol. 2016 Jun;35(6):552-62. doi: 10.1037/hea0000292. Epub 2016 Feb 15.
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Summary health statistics for u.s. Adults: national health interview survey, 2011.美国成年人健康统计摘要:2011年国民健康访谈调查
Vital Health Stat 10. 2012 Dec(256):1-218.
8
The pandemic of physical inactivity: global action for public health.体力活动不足的流行:全球促进公共健康行动。
Lancet. 2012 Jul 21;380(9838):294-305. doi: 10.1016/S0140-6736(12)60898-8.
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Effect of physical inactivity on major non-communicable diseases worldwide: an analysis of burden of disease and life expectancy.体力活动不足对全球主要非传染性疾病的影响:疾病负担和预期寿命的分析。
Lancet. 2012 Jul 21;380(9838):219-29. doi: 10.1016/S0140-6736(12)61031-9.
10
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如果你建造了,他们会来吗?人行道改善与身体活动的一项准实验。

If You Build It, Will They Come? A Quasi-experiment of Sidewalk Improvements and Physical Activity.

作者信息

Knell Gregory, Durand Casey P, Shuval Kerem, Kohl Harold W, Salvo Deborah, Olyuomi Abiodun, Gabriel Kelley Pettee

机构信息

Department of Health Promotion and Behavioral Sciences, The University of Texas Health Science Center (UTHealth) at Houston School of Public Health, Houston, TX.

Michael and Susan Dell Center for Healthy Living, The University of Texas Health Science Center (UTHealth) at Houston School of Public Health in Austin, Austin, TX.

出版信息

Transl J Am Coll Sports Med. 2018 May;3(9):66-71.

PMID:30148210
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6105313/
Abstract

UNLABELLED

Improving sidewalks could lead to more physical activity through improved access, while providing a safe and defined space to walk. Yet, findings on the association between sidewalks and physical activity are inconclusive.

PURPOSE

The purpose of this study was to examine changes in self-reported and accelerometer-derived physical activity associated with living near recently improved sidewalks in a diverse, community-based sample from the Houston Travel Related Activity in Neighborhoods (TRAIN) Study.

METHODS

Data are from 430 adults and include baseline and first annual follow-up (2014-2017). Fully adjusted, two-step regression models were built to test the hypothesis that living near (within 250-meters) an improved sidewalk was associated with greater levels of physical activity than not living near an improved sidewalk.

RESULTS

The majority of participants were female, non-Hispanic black, low income, low education, and nearly half lived near at least one improved sidewalk. After adjustment, among participants reporting some physical activity, living near two sidewalk improvements was associated with 1.6 times more minutes per week of walking and leisure-time physical activity than those not living near a sidewalk improvement (p<0.05). Based on accelerometry, which does not specifically quantify domain-specific physical activity, there were no significant associations.

CONCLUSION

Although these mixed findings warrant further research, results suggest that improving sidewalks may have an effect on participants' physical activity. Nonspecific definitions of sidewalk improvements could be contributing to type 1 error. Future work should also examine behavioral interventions alongside changes to the built environment to determine the effects on physical activity.

摘要

未加标注

改善人行道可以通过改善可达性来促进更多的身体活动,同时提供一个安全且明确的步行空间。然而,关于人行道与身体活动之间关联的研究结果尚无定论。

目的

本研究的目的是在休斯顿邻里出行相关活动(TRAIN)研究中一个多样化的社区样本中,考察与居住在近期改善的人行道附近相关的自我报告和加速度计测量的身体活动变化。

方法

数据来自430名成年人,包括基线数据和首次年度随访数据(2014 - 2017年)。构建了经过充分调整的两步回归模型,以检验居住在(250米范围内)改善的人行道附近比不住在改善的人行道附近与更高水平的身体活动相关这一假设。

结果

大多数参与者为女性、非西班牙裔黑人、低收入、低教育水平,近一半的人居住在至少一条改善的人行道附近。调整后,在报告有一定身体活动的参与者中,居住在两条改善的人行道附近的人每周步行和休闲时间身体活动的分钟数比不住在改善的人行道附近的人多1.6倍(p<0.05)。基于加速度计测量(未具体量化特定领域的身体活动),未发现显著关联。

结论

尽管这些混合结果需要进一步研究,但结果表明改善人行道可能对参与者的身体活动有影响。人行道改善的非特定定义可能导致了I类错误。未来的工作还应在考察建筑环境变化的同时研究行为干预措施,以确定对身体活动的影响。