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Soft Material-Enabled Flexible Hybrid Electronics for Medicine Healthcare and Human-Machine Interfaces

机译:用于医学医疗保健和人机界面的支持软材料的柔性混合电子产品

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摘要

Flexible hybrid electronics (FHE), designed in wearable and implantable configurations, have enormous applications in advanced healthcare, rapid disease diagnostics, and persistent human-machine interfaces. Soft, contoured geometries and time-dynamic deformation of the targeted tissues require high flexibility and stretchability of the integrated bioelectronics. Recent progress in developing and engineering soft materials has provided a unique opportunity to design various types of mechanically compliant and deformable systems. Here, we summarize the required properties of soft materials and their characteristics for configuring sensing and substrate components in wearable and implantable devices and systems. Details of functionality and sensitivity of the recently developed FHE are discussed with the application areas in medicine, healthcare, and machine interactions. This review concludes with a discussion on limitations of current materials, key requirements for next generation materials, and new application areas.
机译:柔性混合电子设备(FHE)具有可穿戴和可植入配置,在先进的医疗保健,快速疾病诊断和持久的人机界面中具有巨大的应用。靶组织的柔软轮廓几何形状和时间动态变形要求集成生物电子器件具有较高的柔韧性和可拉伸性。软材料开发和工程方面的最新进展为设计各种类型的机械柔性和可变形系统提供了独特的机会。在这里,我们总结了软材料所需的特性及其在可穿戴和可植入设备与系统中配置传感和基板组件的特性。在医学,医疗保健和机器交互方面的应用领域中,讨论了最近开发的FHE的功能和灵敏度的详细信息。这篇综述以当前材料的局限性,下一代材料的关键要求以及新的应用领域为主题进行了讨论。

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