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用于心血管诊断和人机接口的表皮机械声传感电子设备。

Epidermal mechano-acoustic sensing electronics for cardiovascular diagnostics and human-machine interfaces.

机构信息

Department of Materials Science and Engineering and Frederick Seitz Materials Research Laboratory, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.

Neuroscience Program, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.

出版信息

Sci Adv. 2016 Nov 16;2(11):e1601185. doi: 10.1126/sciadv.1601185. eCollection 2016 Nov.

Abstract

Physiological mechano-acoustic signals, often with frequencies and intensities that are beyond those associated with the audible range, provide information of great clinical utility. Stethoscopes and digital accelerometers in conventional packages can capture some relevant data, but neither is suitable for use in a continuous, wearable mode, and both have shortcomings associated with mechanical transduction of signals through the skin. We report a soft, conformal class of device configured specifically for mechano-acoustic recording from the skin, capable of being used on nearly any part of the body, in forms that maximize detectable signals and allow for multimodal operation, such as electrophysiological recording. Experimental and computational studies highlight the key roles of low effective modulus and low areal mass density for effective operation in this type of measurement mode on the skin. Demonstrations involving seismocardiography and heart murmur detection in a series of cardiac patients illustrate utility in advanced clinical diagnostics. Monitoring of pump thrombosis in ventricular assist devices provides an example in characterization of mechanical implants. Speech recognition and human-machine interfaces represent additional demonstrated applications. These and other possibilities suggest broad-ranging uses for soft, skin-integrated digital technologies that can capture human body acoustics.

摘要

生理力学声学信号通常具有超出可听范围的频率和强度,提供了非常有临床实用价值的信息。传统封装的听诊器和数字加速度计可以捕获一些相关数据,但两者都不适合连续佩戴使用,并且都存在与通过皮肤机械转换信号相关的缺点。我们报告了一类柔软、贴合的设备,专门用于从皮肤记录力学声学信号,可以应用于身体的几乎任何部位,以最大限度地提高可检测信号,并允许进行多模态操作,如电生理记录。实验和计算研究强调了低有效模量和低面质量密度对于在这种皮肤测量模式下有效运行的关键作用。一系列心脏病患者的心脏地震描记术和心脏杂音检测演示说明了在高级临床诊断中的实用性。心室辅助设备中泵血栓的监测为机械植入物的特征描述提供了一个例子。语音识别和人机界面代表了其他已证明的应用。这些和其他可能性表明,用于捕捉人体声学的柔软、与皮肤集成的数字技术具有广泛的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e30/5262452/d8480fd0b78b/1601185-F1.jpg

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