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建筑的适应失调过载:探索建筑形式与适应失调过载之间的联系。

Architectural Allostatic Overloading: Exploring a Connection between Architectural Form and Allostatic Overloading.

机构信息

Department of Architecture, University of Cambridge, Cambridge CB2 1PX, UK.

出版信息

Int J Environ Res Public Health. 2023 Apr 25;20(9):5637. doi: 10.3390/ijerph20095637.

Abstract

This paper examines, conceptually, the relationship between stress-inducing architectural features and allostatic overload by drawing on literature from neuroimmunology and neuroarchitecture. The studies reviewed from the field of neuroimmunology indicate that chronic or repeated exposure to stress-inducing events may overwhelm the body's regulatory system, resulting in a process termed allostatic overload. While there is evidence from the field of neuroarchitecture that short-term exposure to particular architectural features produce acute stress responses, there is yet to be a study on the relationship between stress-inducing architectural features and allostatic load. This paper considers how to design such a study by reviewing the two primary methods used to measure allostatic overload: biomarkers and clinimetrics. Of particular interest is the observation that the clinical biomarkers used to measure stress in neuroarchitectural studies differ substantially from those used to measure allostatic load. Therefore, the paper concludes that while the observed stress responses to particular architectural forms may indicate allostatic activity, further research is needed to determine whether these stress responses are leading to allostatic overload. Consequently, a discrete longitudinal public health study is advised, one which engages the clinical biomarkers indicative of allostatic activity and incorporates contextual data using a clinimetric approach.

摘要

本文通过借鉴神经免疫学和神经建筑学的文献,从概念上探讨了致压力的建筑特征与适应负荷过载之间的关系。神经免疫学领域的研究表明,长期或反复暴露于致压力的事件中可能会使身体的调节系统不堪重负,从而导致一种称为适应负荷过载的过程。虽然神经建筑学领域有证据表明短期暴露于特定的建筑特征会产生急性应激反应,但尚未有研究探讨致压力的建筑特征与适应负荷之间的关系。本文通过回顾用于测量适应负荷过载的两种主要方法——生物标志物和临床计量学,来探讨如何设计这样的研究。特别值得关注的是,用于测量神经建筑学研究中应激的临床生物标志物与用于测量适应负荷过载的生物标志物有很大的不同。因此,本文得出结论,虽然特定建筑形式所观察到的应激反应可能表明适应负荷活动,但需要进一步研究来确定这些应激反应是否导致适应负荷过载。因此,建议进行一项离散的纵向公共卫生研究,该研究使用临床生物标志物来指示适应负荷活动,并采用临床计量学方法纳入背景数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b017/10178048/638fba8fcb51/ijerph-20-05637-g002.jpg

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