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用于血压检测的无铅铌酸钾钠基可穿戴超声贴片

Lead-Free Potassium Sodium Niobate-Based Wearable Ultrasonic Patches for Blood Pressure Detection.

作者信息

Sun Yajun, Quan Yi, Xing Jie, Tan Zhi, Sun Xinhao, Lou Lifei, Fei Chunlong, Zhu Jianguo, Yang Yintang

机构信息

Faculty of Intergrated Circuit, Xidian University, Xi'an 710071, China.

College of Materials Science and Engineering, Sichuan University, Chengdu 610064, China.

出版信息

Micromachines (Basel). 2025 Mar 28;16(4):392. doi: 10.3390/mi16040392.

Abstract

Ultrasound is one of the most promising methods for blood pressure monitoring due to its harmless, non-invasive, and high-precision characteristics. To further enhance the biocompatibility of ultrasound blood pressure monitors, this work reports wearable ultrasonic patches for blood pressure monitoring based on lead-free KNN (potassium sodium niobate)-based materials. The patches are designed and fabricated with a center frequency of 5 MHz and dimensions of 2.8 mm × 2.8 mm, optimized for both electrical impedance matching and vascular detection. Moreover, biocompatible silicone rubber is used for the packaging. The wearable ultrasonic patches are demonstrated to effectively transmit and receive signals. The diameter of artificial blood vessels is measured to validate the vascular diameter detection capability of the patches. The relationship between blood pressure and vascular diameter is then calculated. A radial artery vascular system platform is built to simulate changes in human blood pressure. Finally, the patches are shown to successfully measure the variation in vessel diameters on this platform. These patches exhibit sufficient detection ability, good biocompatibility, and can adhere tightly to human skin without coupling agents, providing the possibility for safe, sustainable, comfortable, and wearable long-term blood pressure monitoring.

摘要

由于超声具有无害、非侵入性和高精度的特点,它是血压监测最有前景的方法之一。为了进一步提高超声血压监测仪的生物相容性,本文报道了基于无铅铌酸钾钠(KNN)材料的用于血压监测的可穿戴超声贴片。这些贴片的设计和制造中心频率为5MHz,尺寸为2.8mm×2.8mm,针对电阻抗匹配和血管检测进行了优化。此外,采用生物相容性硅橡胶进行封装。实验证明,这种可穿戴超声贴片能够有效地发射和接收信号。通过测量人造血管的直径来验证贴片的血管直径检测能力。然后计算血压与血管直径之间的关系。搭建了一个桡动脉血管系统平台来模拟人体血压的变化。最后,结果表明这些贴片能够成功地测量该平台上血管直径的变化。这些贴片具有足够的检测能力、良好的生物相容性,无需耦合剂就能紧密贴合人体皮肤,为安全、可持续、舒适且可穿戴的长期血压监测提供了可能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0101/12029591/416f8cea431d/micromachines-16-00392-g001.jpg

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