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Fabrication and Characterization of a Conformal Skin-like Electronic System for Quantitative Cutaneous Wound Management

机译:用于定量皮肤伤口管理的保形皮肤状电子系统的制造和表征

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摘要

Recent advances in the development of electronic technologies and biomedical devices offer opportunities for non-invasive, quantitative assessment of cutaneous wound healing on the skin. Existing methods, however, still rely on visual inspections through various microscopic tools and devices that normally include high-cost, sophisticated systems and require well trained personnel for operation and data analysis. Here, we describe methods and protocols to fabricate a conformal, skin-like electronics system that enables conformal lamination to the skin surface near the wound tissues, which provides recording of high fidelity electrical signals such as skin temperature and thermal conductivity. The methods of device fabrication provide details of step-by-step preparation of the microelectronic system that is completely enclosed with elastomeric silicone materials to offer electrical isolation. The experimental study presents multifunctional, biocompatible, waterproof, reusable, and flexible/stretchable characteristics of the device for clinical applications. Protocols of clinical testing provide an overview and sequential process of cleaning, testing setup, system operation, and data acquisition with the skin-like electronics, gently mounted on hypersensitive, cutaneous wound and contralateral tissues on patients.
机译:电子技术和生物医学设备发展的最新进展为无创,定量评估皮肤上皮肤伤口愈合提供了机会。但是,现有方法仍然依赖于通过各种显微镜工具和设备进行的目视检查,这些工具和设备通常包括成本高昂的复杂系统,并且需要训练有素的人员进行操作和数据分析。在这里,我们描述了制造保形的,类似皮肤的电子系统的方法和协议,该系统能够对伤口组织附近的皮肤表面进行保形层压,从而可以记录高保真度的电信号,例如皮肤温度和导热系数。器件制造方法提供了逐步制备微电子系统的详细信息,该微电子系统完全用弹性硅树脂材料封闭以提供电隔离。实验研究提出了用于临床应用的设备的多功能,生物相容性,防水性,可重复使用性和柔性/可拉伸特性。临床测试规程概述了清洁,测试设置,系统操作以及使用类似皮肤的电子设备进行数据采集的概述和顺序过程,这些皮肤类似的电子设备轻轻地安装在患者的过敏性,皮肤伤口和对侧组织上。

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