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Noninvasive photoplethysmography monitoring in free-moving rats

机译:自由活动大鼠的无创光体积描记法监测

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In this study, a noninvasive dynamic physiological monitoring system was proposed to assess animal disease prevention models. Most contemporary remote animal dynamic physiological monitoring systems are invasive by nature, and require the implantation of sensors in rats. This technique is prone to infections and makes continued data collection difficult. Contrarily, the proposed noninvasive system uses photoplethysmographic signals that are amplified in three stages (front end) in conjunction with an adaptive filter (back end) to offset the signal distortion caused by vibrations. The accuracy of the system was subsequently tested by measuring the heart rate of a test animal in both anesthetized and free-moving states. The proposed system has the advantage of low wearing interference. In addition, it is also more stable and durable than invasive systems. Therefore, the system is expected to provide a convenient and effective tool for physiologists of basic clinical studies.
机译:在这项研究中,提出了一种无创动态生理监测系统来评估动物疾病预防模型。大多数当代的远程动物动态生理监测系统本质上都是侵入性的,并且需要在大鼠中植入传感器。该技术容易被感染,并且使连续的数据收集变得困难。相反,所提出的非侵入性系统使用在三个阶段(前端)与自适应滤波器(后端)一起放大的光电容积描记信号来抵消由振动引起的信号失真。随后通过测量处于麻醉状态和自由活动状态的被测动物的心率来测试系统的准确性。所提出的系统具有低磨损干扰的优点。此外,它比侵入式系统更稳定,更耐用。因此,该系统有望为基础临床研究的生理学家提供一种方便有效的工具。

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