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A Numerical Model of Blood Flow Velocity Measurement Based on Finger Ring

机译:基于指环的血流速度测量数值模型

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摘要

Aiming to measure the blood flow velocity in a finger, a novel noninvasive method, i.e., a ring with a heat source chip and a temperature sensor, is designed in this paper. The heat source chip is used to heat the finger and generate heat diffusion between the chip and the temperature sensor. And the temperature sensor is designed to measure the temperature difference. Since the blood flow is the main medium of heat diffusion in bodies, part from the heat energy in the tissue will be taken away by the flowing blood. Therefore, the blood flow velocity can be acquired via its relationship with the temperature difference. Compared to the ultrasound Doppler method and the laser Doppler method, the proposed method guarantees a more convenient operation in more flexible work sites. We also analyze the theory between heat transfer and laminar flow. Finally, several simulations are conducted, and the influence of the relevant factors (i.e., the number of blood vessels, the radius, etc.) corresponding to the simulation results is also discussed.
机译:为了测量手指的血流速度,本文设计了一种新颖的非侵入性方法,即具有热源芯片和温度传感器的环。热源芯片用于加热手指并在芯片和温度传感器之间产生热量扩散。并且温度传感器被设计为测量温度差。由于血流是体内热扩散的主要介质,因此组织中的热能将被流动的血液带走。因此,可以通过血流速度与温度差的关系来获取血流速度。与超声多普勒法和激光多普勒法相比,该方法保证了在更灵活的工作场所中更方便的操作。我们还分析了传热和层流之间的理论。最后,进行了几次模拟,并讨论了与模拟结果相对应的相关因素(即血管数目,半径等)的影响。

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