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一种用于预防压力引起的皮肤损伤的无线可穿戴式体压监测系统。

A Wireless and Wearable Body-Pressure-Monitoring System for the Prevention of Pressure-Induced Skin Injuries.

出版信息

IEEE Trans Biomed Circuits Syst. 2023 Oct;17(5):889-899. doi: 10.1109/TBCAS.2023.3288126. Epub 2023 Nov 21.

Abstract

This article presents a wireless and wearable body-pressure-monitoring system for the on-site, real-time prevention of pressure injuries for immobilized patients. For the prevention of pressure-induced skin injuries, a wearable pressure sensor system is designed to monitor the pressure at multiple sites on the skin and to alert the danger of prolonged application of pressure on the skin with a pressure-time integral (PTI) algorithm. The wearable sensor unit is developed using a pressure sensor based on a liquid metal microchannel and integrated with a flexible printed circuit board that includes a thermistor-type temperature sensor. The wearable sensor unit array is connected to the readout system board for the transmission of measured signals to a mobile device or PC via Bluetooth communication. We evaluate the pressure-sensing performances of the sensor unit and the feasibility of the wireless and wearable body-pressure-monitoring system through an indoor test and a preliminary clinical test at the hospital. It is shown that the presented pressure sensor has high-quality performance with excellent sensitivity to detect both high and low pressure. The proposed system measures the pressure at bony sites on the skin for about six hours continuously without any disconnection or failure, and the PTI-based alarming system operates successfully in the clinical setup. The system measures the pressure applied to the patient and provides meaningful information from the measured data for early diagnosis and prevention of bedsores to doctors, nurses, and healthcare workers.

摘要

本文提出了一种用于现场实时预防固定患者压疮的无线可穿戴体压监测系统。为了预防压力引起的皮肤损伤,设计了一种可穿戴压力传感器系统,以监测皮肤多个部位的压力,并通过压力-时间积分 (PTI) 算法提醒皮肤长时间受压的危险。可穿戴传感器单元使用基于液态金属微通道的压力传感器和集成有热敏电阻式温度传感器的柔性印刷电路板开发而成。可穿戴传感器单元阵列连接到读出系统板,通过蓝牙通信将测量信号传输到移动设备或 PC。我们通过室内测试和医院的初步临床测试评估了传感器单元的压力传感性能和无线可穿戴体压监测系统的可行性。结果表明,所提出的压力传感器具有出色的性能,对高低压力都具有出色的灵敏度。所提出的系统可以连续测量皮肤骨突部位的压力长达六个小时,而且基于 PTI 的报警系统在临床环境中运行良好。该系统测量施加在患者身上的压力,并为医生、护士和医疗保健工作者提供有意义的信息,以便进行早期诊断和预防褥疮。

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