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软电子实现的人机交互,用于吞咽训练。

Soft Electronics Enabled Ergonomic Human-Computer Interaction for Swallowing Training.

机构信息

Department of Mechanical and Nuclear Engineering, School of Engineering, Virginia Commonwealth University, Richmond, VA 23284, USA.

School of Engineering and Digital Arts, University of Kent, Canterbury, United Kingdom.

出版信息

Sci Rep. 2017 Apr 21;7:46697. doi: 10.1038/srep46697.

Abstract

We introduce a skin-friendly electronic system that enables human-computer interaction (HCI) for swallowing training in dysphagia rehabilitation. For an ergonomic HCI, we utilize a soft, highly compliant ("skin-like") electrode, which addresses critical issues of an existing rigid and planar electrode combined with a problematic conductive electrolyte and adhesive pad. The skin-like electrode offers a highly conformal, user-comfortable interaction with the skin for long-term wearable, high-fidelity recording of swallowing electromyograms on the chin. Mechanics modeling and experimental quantification captures the ultra-elastic mechanical characteristics of an open mesh microstructured sensor, conjugated with an elastomeric membrane. Systematic in vivo studies investigate the functionality of the soft electronics for HCI-enabled swallowing training, which includes the application of a biofeedback system to detect swallowing behavior. The collection of results demonstrates clinical feasibility of the ergonomic electronics in HCI-driven rehabilitation for patients with swallowing disorders.

摘要

我们介绍了一种皮肤友好型电子系统,该系统可用于吞咽障碍康复中的人机交互(HCI)训练。为了实现符合人体工程学的 HCI,我们使用了柔软、高顺应性的(“皮肤状”)电极,该电极解决了现有刚性和平面电极与有问题的导电电解质和粘贴垫相结合的关键问题。这种“皮肤状”电极提供了高度一致的、用户舒适的皮肤交互,可长期佩戴,在下巴上进行高保真的吞咽肌电图记录。力学建模和实验量化捕获了开放式网格微结构传感器的超弹性力学特性,该传感器与弹性膜相结合。系统的体内研究调查了软电子产品在 HCI 驱动的吞咽训练中的功能,其中包括应用生物反馈系统来检测吞咽行为。收集的结果表明,这种符合人体工程学的电子设备在 HCI 驱动的吞咽障碍患者康复中具有临床可行性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/370a/5399368/c6b47625800a/srep46697-f1.jpg

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