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用于精确水合评估和空间映射的表皮阻抗感应片。

Epidermal impedance sensing sheets for precision hydration assessment and spatial mapping.

出版信息

IEEE Trans Biomed Eng. 2013 Oct;60(10):2848-57. doi: 10.1109/TBME.2013.2264879. Epub 2013 May 31.

Abstract

This paper presents a class of hydration monitor that uses ultrathin, stretchable sheets with arrays of embedded impedance sensors for precise measurement and spatially multiplexed mapping. The devices contain miniaturized capacitive electrodes arranged in a matrix format, capable of integration with skin in a conformal, intimate manner due to the overall skin-like physical properties. These "epidermal" systems noninvasively quantify regional variations in skin hydration, at uniform or variable skin depths. Experimental results demonstrate that the devices possess excellent uniformity, with favorable precision and accuracy. Theoretical models capture the underlying physics of the measurement and enable quantitative interpretation of the experimental results. These devices are appealing for applications ranging from skin care and dermatology, to cosmetology and health/wellness monitoring, with the additional potential for combined use with other classes of sensors for comprehensive, quantitative physiological assessment via the skin.

摘要

本文提出了一类水合监测仪,它使用超薄、可拉伸的薄片,带有嵌入式阻抗传感器阵列,用于精确测量和空间复用映射。这些设备包含微型化的电容电极,以矩阵格式排列,由于具有整体类似皮肤的物理特性,因此可以以贴合、亲密的方式与皮肤集成。这些“表皮”系统可以非侵入性地定量测量皮肤水合作用的区域变化,无论是在均匀的还是可变的皮肤深度。实验结果表明,这些设备具有优异的均匀性,具有良好的精度和准确性。理论模型捕捉到了测量的基础物理特性,并能够对实验结果进行定量解释。这些设备在从皮肤护理和皮肤病学到美容和健康/养生监测等应用中都很有吸引力,此外还有可能与其他类型的传感器结合使用,通过皮肤进行全面、定量的生理评估。

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