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Multifunctional Skin-like Electronics for Quantitative Clinical Monitoring of Cutaneous Wound Healing

机译:多功能皮肤样电子设备用于皮肤伤口愈合的定量临床监测

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摘要

Non-invasive, biomedical devices have the potential to provide important, quantitative data for the assessment of skin diseases and wound healing. Traditional methods either rely on qualitative visual and tactile judgments of a professional and/or data obtained using instrumentation with forms that do not readily allow intimate integration with sensitive skin near a wound site. Here we report a skin-like electronics platform that can softly and reversibly laminate perilesionally at wounds to provide highly accurate, quantitative data of relevance to the management of surgical wound healing. Clinical studies on patients using thermal sensors and actuators in fractal layouts provide precise time-dependent mapping of temperature and thermal conductivity of the skin near the wounds. Analytical and simulation results establish the fundamentals of the sensing modalities, the mechanics of the system, and strategies for optimized design. The use of this type of ‘epidermal’ electronics system in a realistic, clinical setting with human subjects establishes a set of practical procedures in disinfection, reuse, and protocols for quantitative measurement. The results have the potential to address important unmet needs in chronic wound management.
机译:非侵入性生物医学设备有潜力为评估皮肤疾病和伤口愈合提供重要的定量数据。传统方法要么依靠专业人士的定性视觉和触觉判断,要么使用仪器难以获得与伤口部位附近敏感皮肤紧密融合的形式获得的数据。在这里,我们报告了一个皮肤类似的电子平台,该平台可以在伤口处柔软且可逆地蠕动层压,以提供与外科伤口愈合管理相关的高度准确,定量的数据。使用分形布局中的热传感器和执行器对患者进行的临床研究提供了精确的时间相关的温度和伤口附近皮肤导热率的映射图。分析和模拟结果确定了感应模态,系统力学和优化设计策略的基础。在人类受试者的现实临床环境中使用这种类型的“表皮”电子系统,为消毒,重复使用和定量测量规程建立了一套实用的程序。结果有可能解决慢性伤口管理中重要的未满足需求。

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