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An Innovative Context-Based Crystal-Growth Activity Space Method for Environmental Exposure Assessment: A Study Using GIS and GPS Trajectory Data Collected in Chicago

机译:用于环境暴露评估的基于上下文的创新晶体生长活动空间方法:使用在芝加哥收集的GIS和GPS轨迹数据进行的研究

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摘要

Scholars in the fields of health geography, urban planning, and transportation studies have long attempted to understand the relationships among human movement, environmental context, and accessibility. One fundamental question for this research area is how to measure individual activity space, which is an indicator of where and how people have contact with their social and physical environments. Conventionally, standard deviational ellipses, road network buffers, minimum convex polygons, and kernel density surfaces have been used to represent people’s activity space, but they all have shortcomings. Inconsistent findings of the effects of environmental exposures on health behaviors/outcomes suggest that the reliability of existing studies may be affected by the uncertain geographic context problem (UGCoP). This paper proposes the context-based crystal-growth activity space as an innovative method for generating individual activity space based on both GPS trajectories and the environmental context. This method not only considers people’s actual daily activity patterns based on GPS tracks but also takes into account the environmental context which either constrains or encourages people’s daily activity. Using GPS trajectory data collected in Chicago, the results indicate that the proposed new method generates more reasonable activity space when compared to other existing methods. This can help mitigate the UGCoP in environmental health studies.
机译:健康地理学,城市规划和交通运输研究领域的学者长期以来一直试图了解人类活动,环境环境和可及性之间的关系。该研究领域的一个基本问题是如何衡量个人活动空间,这是人们与社会和自然环境接触的地点和方式的指示器。传统上,标准偏差椭圆,路网缓冲区,最小凸多边形和核密度表面已被用来代表人们的活动空间,但是它们都有缺点。环境暴露对健康行为/结果影响的不一致发现表明,现有研究的可靠性可能受到不确定的地理环境问题(UGCoP)的影响。本文提出了基于上下文的晶体生长活动空间,作为基于GPS轨迹和环境上下文生成个体活动空间的一种创新方法。这种方法不仅考虑了基于GPS轨迹的人们的实际日常活动方式,而且还考虑到了限制或鼓励人们日常活动的环境。使用在芝加哥收集的GPS轨迹数据,结果表明,与其他现有方法相比,提出的新方法产生了更合理的活动空间。这可以帮助减轻环境健康研究中的UGCoP。

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