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A strain-absorbing design for tissue-machine interfaces using a tunable adhesive gel

机译:使用可调式粘合凝胶的组织机界面应变吸收设计

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To measure electrophysiological signals from the human body, it is essential to establish stable, gentle and nonallergic contacts between the targeted biological tissue and the electrical probes. However, it is difficult to form a stable interface between the two for long periods, especially when the surface of the biological tissue is wet and/or the tissue exhibits motion. Here we resolve this difficulty by designing and fabricating smart, stress-absorbing electronic devices that can adhere to wet and complex tissue surfaces and allow for reliable, long-term measurements of vital signals. We demonstrate a multielectrode array, which can be attached to the surface of a rat heart, resulting in good conformal contact for more than 3 h. Furthermore, we demonstrate arrays of highly sensitive, stretchable strain sensors using a similar design. Ultra-flexible electronics with enhanced adhesion to tissue could enable future applications in chronic in vivo monitoring of biological signals.
机译:要测量来自人体的电生理信号,必须在目标生物组织和电探针之间建立稳定,轻柔和无过敏的接触。然而,很难长时间地在两者之间形成稳定的界面,特别是当生物组织的表面潮湿和/或组织表现出运动时。在这里,我们通过设计和制造可以粘附在潮湿和复杂的组织表面上的智能,压力吸收型电子设备来解决此难题,并且可以对生命信号进行可靠的长期测量。我们演示了一个多电极阵列,可以将其连接到大鼠心脏的表面,从而导致良好的共形接触时间超过3小时。此外,我们使用类似的设计演示了高灵敏度,可拉伸应变传感器的阵列。具有增强的对组织的粘附性的超柔性电子设备可以使将来在生物信号的长期体内监测中应用。

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