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Ultrathin conformal devices for precise and continuous thermal characterization of human skin

机译:超薄适形设备可精确连续地表征人体皮肤

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摘要

Precision thermometry of the skin can, together with other measurements, provide clinically relevant information about cardiovascular health, cognitive state, malignancy and many other important aspects of human physiology. Here, we introduce an ultrathin, compliant skin-like sensor/actuator technology that can pliably laminate onto the epidermis to provide continuous, accurate thermal characterizations that are unavailable with other methods. Examples include non-invasive spatial mapping of skin temperature with millikelvin precision, and simultaneous quantitative assessment of tissue thermal conductivity. Such devices can also be implemented in ways that reveal the time-dynamic influence of blood flow and perfusion on these properties. Experimental and theoretical studies establish the underlying principles of operation, and define engineering guidelines for device design. Evaluation of subtle variations in skin temperature associated with mental activity, physical stimulation and vasoconstriction/dilation along with accurate determination of skin hydration through measurements of thermal conductivity represent some important operational examples.
机译:皮肤的精确测温可以与其他测量结果一起,提供有关心血管健康,认知状态,恶性肿瘤和人类生理学许多其他重要方面的临床相关信息。在这里,我们介绍了一种超薄,顺应皮肤的传感器/执行器技术,该技术可以轻松地层压到表皮上,以提供其他方法无法提供的连续,准确的热特性。实例包括以毫ikelvin精度对皮肤温度进行非侵入性空间映射,并同时定量评估组织的热导率。这样的设备也可以以揭示血液流动和灌注对这些特性的时间动态影响的方式来实现。实验和理论研究建立了基本的操作原理,并为设备设计定义了工程指导原则。与精神活动,身体刺激和血管收缩/扩张有关的皮肤温度细微变化的评估,以及通过热导率的测量准确测定皮肤水合作用,代表了一些重要的操作实例。

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