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Design and Simulation of an Integrated Wireless Capacitive Sensors Array for Measuring Ventricular Pressure

机译:用于测量心室压力的集成无线电容传感器阵列的设计和仿真

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摘要

This paper reports the novel design of a touch mode capacitive pressure sensor (TMCPS) system with a wireless approach for a full-range continuous monitoring of ventricular pressure. The system consists of two modules: an implantable set and an external reading device. The implantable set, restricted to a 2 × 2 cm2 area, consists of a TMCPS array connected with a dual-layer coil, for making a reliable resonant circuit for communication with the external device. The capacitive array is modelled considering the small deflection regime for achieving a dynamic and full 5–300 mmHg pressure range. In this design, the two inductive-coupled modules are calculated considering proper electromagnetic alignment, based on two planar coils and considering the following: 13.56 MHz frequency to avoid tissue damage and three types of biological tissue as core (skin, fat and muscle). The system was validated with the Comsol Multiphysics and CoventorWare softwares; showing a 90% power transmission efficiency at a 3.5 cm distance between coils. The implantable module includes aluminum- and polyimide-based devices, which allows ergonomic, robust, reproducible, and technologically feasible integrated sensors. In addition, the module shows a simplified and low cost design approach based on PolyMEMS INAOE® technology, featured by low-temperature processing.
机译:本文报道了一种采用无线方法的全模式连续心室压力监测的触摸模式电容式压力传感器(TMCPS)系统的新颖设计。该系统由两个模块组成:可植入装置和外部读取设备。可植入装置的面积限制为2×2 cm 2 ,由与双层线圈连接的TMCPS阵列组成,用于形成可靠的谐振电路以与外部设备通信。对电容阵列进行建模时要考虑到较小的挠度范围,以实现动态和完整的5–300 mmHg压力范围。在此设计中,基于两个平面线圈并考虑以下因素,在考虑适当的电磁对准的情况下计算了两个电感耦合模块:避免组织损伤的13.56 MHz频率以及作为核心(皮肤,脂肪和肌肉)的三种生物组织。该系统已通过Comsol Multiphysics和CoventorWare软件进行了验证;在线圈之间3.5厘米的距离处显示90%的功率传输效率。可植入模块包括基于铝和聚酰亚胺的设备,可实现人体工程学,坚固耐用,可重现且技术上可行的集成传感器。此外,该模块还展示了一种基于PolyMEMS INAOE ®技术的简化且低成本的设计方法,该技术具有低温处理功能。

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