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低功耗、小规模可穿戴医疗设备的原型分析

Prototype analysis of a low-power, small-scale wearable medical device.

作者信息

da Silva Pablo Dutra, Filho Pedro Bertemes

机构信息

Electrical Engineering Department, State University of Santa Catarina, Santa Catarina, Brazil.

出版信息

J Electr Bioimpedance. 2025 Jan 4;15(1):169-176. doi: 10.2478/joeb-2024-0020. eCollection 2024 Jan.

Abstract

Wearable and portable devices are gaining significant popularity across consumer electronics as well as in medical and industrial fields. To ensure that these devices are both comfortable and appealing to users, they need to have low battery consumption and be compact in both size and weight. The EGluco project is focused on developing a wearable device for non-invasive blood glucose monitoring. This multi-sensor device incorporates electrical bioimpedance spectroscopy as one of its measurement techniques. One of the earlier versions of the device was deemed unsuitable as a wearable due to its large size and high power consumption. To make the device more suitable for wearability, the previous hardware was assessed, and a new design was proposed that simplified the system's power supply and reduced the operating voltage. This article presents two of these designs: an improved Howland current source with a supply voltage of 3.3 V, an output current of 250 , and the ability to conduct bioimpedance analysis up to 1 MHz using pulsed DIBS (Discrete Interval Binary Sequence) signals, and an instrumentation amplifier with the same supply voltage as the current source, a voltage gain of four, and a slew rate of 150 . By simplifying the power supply and implementing other changes, the device's size was reduced to a single 5 × 5 cm circuit board, compared to the previous configuration of four separate boards connected by cables.

摘要

可穿戴设备和便携式设备在消费电子产品以及医疗和工业领域越来越受欢迎。为确保这些设备既舒适又吸引用户,它们需要低功耗,并且在尺寸和重量上都很紧凑。EGluco项目专注于开发一种用于无创血糖监测的可穿戴设备。这种多传感器设备将生物电阻抗光谱技术作为其测量技术之一。该设备的早期版本因其尺寸大、功耗高而被认为不适合作为可穿戴设备。为使该设备更适合可穿戴性,对先前的硬件进行了评估,并提出了一种新设计,简化了系统电源并降低了工作电压。本文介绍了其中两种设计:一种改进的霍兰德电流源,电源电压为3.3V,输出电流为250,能够使用脉冲DIBS(离散间隔二进制序列)信号进行高达1MHz的生物阻抗分析;以及一种仪表放大器,其电源电压与电流源相同,电压增益为4,转换速率为150。通过简化电源并进行其他更改,该设备的尺寸缩小到了一块5×5厘米的单个电路板,而之前是由电缆连接的四块单独的电路板。

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