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从模拟皮肤温度感受器活动预测动态环境中的热舒适度。

Predicting thermal pleasure experienced in dynamic environments from simulated cutaneous thermoreceptor activity.

机构信息

Center for the Built Environment (CBE), University of California Berkeley, Berkeley, California, USA.

Indoor Environmental Quality Lab, School of Architecture, Design and Planning, The University of Sydney, Sydney, NSW, Australia.

出版信息

Indoor Air. 2021 Nov;31(6):2266-2280. doi: 10.1111/ina.12859. Epub 2021 May 28.

Abstract

Research into human thermal perception indoors has focused on "neutrality" under steady-state conditions. Recent interest in thermal alliesthesia has highlighted the hedonic dimension of our thermal world that has been largely overlooked by science. Here, we show the activity of sensory neurons can predict thermal pleasure under dynamic exposures. A numerical model of cutaneous thermoreceptors was applied to skin temperature measurements from 12 human subjects. A random forest model trained on simulated thermoreceptor impulses could classify pleasure responses (F1 score of 67%) with low false positives/negatives (4%). Accuracy increased (83%) when excluding the few extreme (dis)pleasure responses. Validation on an independent dataset confirmed model reliability. This is the first empirical demonstration of the relationship between thermoreceptors and pleasure arising from thermal stimuli. Insights into the neurophysiology of thermal perception can enhance the experience of built environments through designs that promote sensory excitation instead of neutrality.

摘要

室内人体热感知研究一直集中在稳态条件下的“中性”。最近对热错觉的兴趣强调了我们热世界的愉悦维度,而这在很大程度上被科学所忽视。在这里,我们展示了感觉神经元的活动可以预测动态暴露下的热快感。我们将皮肤热感受器的数值模型应用于 12 名人类受试者的皮肤温度测量。经过模拟热感受器冲动训练的随机森林模型可以对快感反应进行分类(F1 分数为 67%),假阳性/假阴性率低(4%)。当排除少数极端(不)快感反应时,准确性会提高(83%)。对独立数据集的验证证实了模型的可靠性。这是首次从经验上证明了热感受器与热刺激引起的快感之间的关系。对热感知神经生理学的深入了解可以通过促进感官刺激而不是中性的设计来增强建筑环境的体验。

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