National Institute for Research and Development in Microtechnologies, 126A, Erou Iancu Nicolae Street, 077190 Bucharest, Romania.
Sensors (Basel). 2021 Mar 16;21(6):2075. doi: 10.3390/s21062075.
In recent years, research into the field of materials for flexible sensors and fabrication techniques directed towards wearable devices has helped to raise awareness of the need for new sensors with healthcare applicability. Our goal was to create a wearable flexible pressure sensor that could be integrated into a clinically approved blood pressure monitoring device. The sensor is built from a microfluidic channel encapsulated between two polymer layers, one layer being covered by metal transducers and the other being a flexible membrane containing the microfluidic channel, which also acts as a sealant for the structure. The applied external pressure deforms the channel, causing changes in resistance to the microfluidic layer. Electrical characterization has been performed in 5 different configurations, using alternating current (AC) and (DC) direct current measurements. The AC measurements for the fabricated pressure sensor resulted in impedance values at tens of hundreds of kOhm. Our sensor proved to have a high sensitivity for pressure values between 0 and 150 mm Hg, being subjected to repeatable external forces. The novelty presented in our work consists in the unique technological flow for the fabrication of the flexible wearable pressure sensor. The proposed miniaturized pressure sensor will ensure flexibility, low production cost and ease of use. It is made of very sensitive microfluidic elements and biocompatible materials and can be integrated into a wearable cuffless device for continuous blood pressure monitoring.
近年来,针对可穿戴设备的柔性传感器材料研究和制造技术的研究引起了人们对具有医疗应用的新型传感器的需求的关注。我们的目标是开发一种可集成到临床认可的血压监测设备中的可穿戴式柔性压力传感器。该传感器由夹在两个聚合物层之间的微流道构成,一层覆盖有金属换能器,另一层是包含微流道的柔性膜,该膜也作为结构的密封剂。施加的外部压力使通道变形,导致微流体层的电阻变化。已经在 5 种不同的配置中进行了交流(AC)和直流(DC)直接电流测量的电特性表征。所制造的压力传感器的交流测量结果得出了数十到数百千欧的阻抗值。我们的传感器在 0 到 150 毫米汞柱的压力范围内表现出很高的灵敏度,可承受可重复的外部力。我们的工作中的新颖之处在于制造柔性可穿戴压力传感器的独特技术流程。所提出的小型化压力传感器将确保灵活性、低成本和易用性。它由非常敏感的微流体元件和生物相容性材料制成,可以集成到无袖带的可穿戴设备中,用于连续血压监测。