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Biocompatible Pressure Sensing Skins for Minimally Invasive Surgical Instruments

机译:用于微创外科手术器械的生物相容性压力传感皮肤

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摘要

This paper presents 800-μm thick, biocompatible sensing skins composed of arrays of pressure sensors. The arrays can be configured to conform to the surface of medical instruments so as to act as disposable sensing skins. In particular, the fabrication of cylindrical geometries is considered here for use on endoscopes. The sensing technology is based on polydimethylsiloxane synthetic silicone encapsulated microchannels filled with a biocompatible salt-saturated glycerol solution, functioning as the conductive medium. A multi-layer manufacturing approach is introduced that enables stacking sensing microchannels, mechanical stress concentration features, and electrical routing via flexcircuits in a thickness of less than 1 mm. The proposed approach is inexpensive and does not require clean room tools or techniques. The mechanical stress concentration features are implemented using a patterned copper layer that serves to improve sensing range and sensitivity. Sensor performance is demonstrated experimentally using a sensing skin mounted on a neuroendoscope insertion cannula and is shown to outperform previously developed non-biocompatible sensors.
机译:本文介绍了由压力传感器阵列组成的800μm厚,生物相容性传感皮肤。阵列可以被配置成符合医疗器械的表面,从而充当一次性感测皮肤。特别地,在此考虑将圆柱形几何形状的制造用于内窥镜。传感技术基于填充有生物相容性盐饱和甘油溶液的聚二甲基硅氧烷合成有机硅封装的微通道,可充当导电介质。引入了一种多层制造方法,该方法可通过厚度小于1 mm的柔性电路堆叠传感微通道,机械应力集中特征和电气布线。所提出的方法便宜并且不需要洁净室工具或技术。机械应力集中特征是使用图案化的铜层实现的,该图案化的铜层用于改善感测范围和灵敏度。使用安装在神经内窥镜插入套管上的感应皮肤通过实验证明了传感器的性能,并且其性能优于以前开发的非生物相容性传感器。

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