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Rugged and breathable forms of stretchable electronics with adherent composite substrates for transcutaneous monitoring

机译:坚固耐用且透气形式的可拉伸电子产品,带有粘附的复合基材,用于经皮监测

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摘要

Research in stretchable electronics involves fundamental scientific topics relevant to applications with importance in human healthcare. Despite significant progress in active components, routes to mechanically robust construction are lacking. Here, we introduce materials and composite designs for thin, breathable, soft electronics that can adhere strongly to the skin, with the ability to be applied and removed hundreds of times without damaging the devices or the skin, even in regions with substantial topography and coverage of hair. The approach combines thin, ultralow modulus, cellular silicone materials with elastic, strain-limiting fabrics, to yield a compliant but rugged platform for stretchable electronics. Theoretical and experimental studies highlight the mechanics of adhesion and elastic deformation. Demonstrations include cutaneous optical, electrical and radio frequency sensors for measuring hydration state, electrophysiological activity, pulse and cerebral oximetry. Multipoint monitoring of a subject in an advanced driving simulator provides a practical example.
机译:可伸缩电子学的研究涉及与人类医疗中的重要应用相关的基础科学课题。尽管有源部件取得了显着进步,但仍缺乏实现机械坚固结构的途径。在这里,我们介绍用于薄,透气,柔软的电子产品的材料和复合材料设计,这些材料可以牢固地粘附在皮肤上,即使在地形和覆盖范围较大的区域中,也可以应用和移除数百次而不会损坏设备或皮肤。头发。该方法将薄的,超低模量的多孔硅树脂材料与弹性的,可限制应变的织物结合在一起,从而为可伸缩电子产品提供了一个顺应但坚固的平台。理论和实验研究突出了粘附和弹性变形的机理。演示包括用于测量水合状态,电生理活动,脉搏和脑血氧饱和度的皮肤光学,电学和射频传感器。在高级驾驶模拟器中对对象进行多点监视提供了一个实际示例。

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