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Wearable Pneumatic Sensor for Non-invasive Continuous Arterial Blood Pressure Monitoring

机译:穿戴式气动传感器,用于无创连续动脉血压监测

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The paper discusses a new type of active sensors for continuous non-invasive monitoring of arterial blood pressure based on the local pressure compensation. Practical implementation of this sensor became possible due to the effective use of modern radio-electronic element base, focused on low power consumption, miniaturization of sizes and built-in computing and communication components (microcontrollers). These characteristics are inherent in modern wearable medical devices, so the sensor proposed can be reliably attributed to this category of appliances. The use of miniature measuring unit, its arrangement close to the working area and the possibility of processing digitized data in real time directly in the microcontroller of the sensor made it possible to carry out a unique method of pressure compensation at very small (1 mm~2 or less) areas of elastic surfaces, such as the surface tissues of the human body. The technical implementation of the principle of local pressure compensation in the form of a pneumatic sensor, features of blood pressure measurement regimes, the results obtained and some theoretical recommendations are considered in the paper. The problem of stability of measurement modes is discussed in detail. Experimentally discovered causes of stability disturbance are considered and their theoretical analysis is carried out. The conclusion summarizes the results and outlines the ways of further research.
机译:本文讨论了一种基于局部压力补偿的,用于连续无创监测动脉血压的新型有源传感器。由于有效利用了现代无线电电子元件基础,该传感器的实际实现成为可能,该基础着重于低功耗,尺寸的小型化以及内置的计算和通信组件(微控制器)。这些特性是现代可穿戴医疗设备所固有的,因此建议的传感器可以可靠地归因于此类设备。微型测量单元的使用,靠近工作区域的布置以及直接在传感器的微控制器中实时处理数字化数据的可能性,使得有可能在非常小的(1 mm〜)压力下执行独特的压力补偿方法。 2个或以下)的弹性表面区域,例如人体的表面组织。本文考虑了采用气动传感器形式的局部压力补偿原理的技术实施,血压测量方式的特点,获得的结果以及一些理论上的建议。详细讨论了测量模式的稳定性问题。考虑了实验发现的稳定性扰动的原因,并进行了理论分析。结论总结了结果,并概述了进一步研究的方法。

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