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用于监测心室压力的集成、柔性、无线压力传感器阵列的制造

Fabrication of an Integrated, Flexible, Wireless Pressure Sensor Array for the Monitoring of Ventricular Pressure.

作者信息

Hernández-Sebastián Natiely, Diaz-Alonso Daniela, Barrientos-García Bernardino, Renero-Carrillo Francisco Javier, Calleja-Arriaga Wilfrido

机构信息

Centro de Investigaciones en Óptica, A.C., CIO, Leon 37150, Mexico.

CD-MEMS INAOE, Puebla 72840, Mexico.

出版信息

Micromachines (Basel). 2024 Nov 28;15(12):1435. doi: 10.3390/mi15121435.

Abstract

This work presents the design, fabrication, and rigorous validation of a flexible, wireless, capacitive pressure sensor for the full-range continuous monitoring of ventricular pressure. The proposed system consists of an implantable set and an external readout device; both modules were designed to form an RCL resonant circuit for passive, wireless pressure sensing and signal retrieving. Using surface micromachining and flexible electronics techniques, a two-variable capacitor array and a dual-layer planar coil were integrated into a flexible ergonomic substrate, avoiding hybrid-like connections in the implantable set. The proposed arrangement (capacitor array and dual-layer coil) allows us to optimize the operation pressure range and sensing distance. The use of polyimide as both the flexible substrate and the passivation material is a key feature, ensuring a biocompatible, implantable set that is mechanically flexible and can be folded to a compact size to achieve minimally invasive implantation. An external readout device has also been developed using a discrete printed circuit board (PCB) approach to support pressure measurements. The pressure responsivity of the sensor was validated to the laboratory level using a controlled pressure chamber. The results obtained show that the capacitance value of the sensor changed from 5.68 pF to 33.26 pF as the pressure varied from 0 to 300 mmHg. Correspondingly, the resonance frequency of the implantable set shifted from 12.75 MHz to 5.27 MHz. The sensitivity of the capacitive sensor was approximately 0.58 pF/mmHg and the typical response time was 220 ms. The wireless system performance was evaluated in both air and synthetic biological tissue using a Maxwell-Wien bridge circuit. The results showed a sensing distance longer than 3.5 cm, even under moderate misalignment conditions (up to 1.5 cm). The output voltage was successfully measured, ranging from 502.54 mV to 538.29 mV, throughout the full pressure range, with a measurement error of ±2.2 mV.

摘要

本文介绍了一种用于心室压力全范围连续监测的柔性、无线、电容式压力传感器的设计、制造及严格验证。所提出的系统由一个可植入装置和一个外部读出设备组成;两个模块均设计用于形成一个RCL谐振电路,以实现无源、无线压力传感和信号检索。利用表面微加工和柔性电子技术,将一个双变量电容阵列和一个双层平面线圈集成到一个符合人体工程学的柔性基板中,避免了可植入装置中的类似混合连接。所提出的布置(电容阵列和双层线圈)使我们能够优化工作压力范围和传感距离。使用聚酰亚胺作为柔性基板和钝化材料是一个关键特性,确保了一个生物相容性好、可植入的装置,该装置在机械上具有柔性,并且可以折叠成紧凑尺寸以实现微创植入。还使用分立印刷电路板(PCB)方法开发了一个外部读出设备,以支持压力测量。使用可控压力室在实验室水平验证了传感器的压力响应性。获得的结果表明,随着压力从0变化到300 mmHg,传感器的电容值从5.68 pF变化到33.26 pF。相应地,可植入装置的谐振频率从12.75 MHz偏移到5.27 MHz。电容式传感器的灵敏度约为0.58 pF/mmHg,典型响应时间为220 ms。使用麦克斯韦-维恩桥电路在空气和合成生物组织中评估了无线系统性能。结果表明,即使在中等失准条件下(高达1.5 cm),传感距离也超过3.5 cm。在整个全压力范围内成功测量了输出电压,范围为502.54 mV至538.29 mV,测量误差为±2.2 mV。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d17/11676487/585618298abd/micromachines-15-01435-g001.jpg

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