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How do changes to the built environment influence walking behaviors? a longitudinal study within a university campus in Hong Kong

机译:建筑环境的变化如何影响步行行为?在香港大学校园内进行的纵向研究

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Background Previous studies testing the association between the built environment and walking behavior have been largely cross-sectional and have yielded mixed results. This study reports on a natural experiment in which changes to the built environment were implemented at a university campus in Hong Kong. Longitudinal data on walking behaviors were collected using surveys, one before and one after changes to the built environment, to test the influence of changes to the built environment on walking behavior. Methods Built environment data are from a university campus in Hong Kong, and include land use, campus bus services, pedestrian network, and population density data collected from campus maps, the university developmental office, and field surveys. Walking behavior data were collected at baseline in March 2012 (n?=?198) and after changes to the built environment from the same cohort of subjects in December 2012 (n?=?169) using a walking diary. Geographic information systems (GIS) was used to map walking routes and built environment variables, and compare each subject’s walking behaviors and built environment exposure before and after the changes to the built environment. Walking behavior outcomes were changes in: i) walking distance, ii) destination-oriented walking, and iii) walked altitude range. Multivariable linear regression models were used to test for associations between changes to the built environment and changes in walking behaviors. Results Greater pedestrian network connectivity predicted longer walking distances and an increased likelihood of walking as a means of transportation. The increased use of recreational (vs. work) buildings, largely located at mid-range altitudes, as well as increased population density predicted greater walking distances.Having more bus services and a greater population density encouraged people to increase their walked altitude range. Conclusions In this longitudinal study, changes to the built environment were associated with changes in walking behaviors. Use of GIS combined with walking diaries presents a practical method for mapping and measuring changes in the built environment and walking behaviors, respectively. Additional longitudinal studies can help clarify the relationships between the built environment and walking behaviors identified in this natural experiment.
机译:背景技术先前测试建筑环境与步行行为之间关系的研究大部分是横断面的,并且得出的结果参差不齐。这项研究报告了一项自然实验,该实验在香港的大学校园中对建筑环境进行了更改。使用调查收集关于步行行为的纵向数据,在建筑环境变化之前和之后进行一次调查,以测试建筑环境变化对步行行为的影响。方法建立的环境数据来自香港的一个大学校园,包括土地使用,校园巴士服务,行人网络以及从校园地图,大学发展办公室和实地调查收集的人口密度数据。步行行为数据是在2012年3月的基线(n = 198)和2012年12月同一组受试者的建筑环境发生变化(n = 169)后使用步行日记收集的。地理信息系统(GIS)用于绘制步行路线和建筑环境变量,并比较每个对象在建筑环境变化前后的步行行为和建筑环境暴露情况。步行行为的结果是以下方面的变化:i)步行距离,ii)面向目的地的步行,以及iii)步行高度范围。多变量线性回归模型用于测试建筑环境变化与步行行为变化之间的关联。结果更好的人行网络连通性意味着更长的步行距离和步行作为交通工具的可能性增加。娱乐性建筑(相对于工作场所)的使用增加,主要位于中等高度,人口密度的增加预示了步行距离的增加;公交服务的增加和人口密度的增加促使人们增加了步行距离。结论在这项纵向研究中,建筑环境的变化与步行行为的变化有关。 GIS与步行日记的结合使用提供了一种实用的方法,分别用于绘制和测量建筑环境和步行行为的变化。额外的纵向研究可以帮助阐明在自然实验中确定的建筑环境与步行行为之间的关系。

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