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Noninvasive and nonocclusive determination of blood pressure using laser Do

机译:使用激光Do进行无创且无阻塞的血压测定

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Abstract: This report describes an approach determining blood pressure noninvasively without cuff. Regarding an elastic, fluid-filled tube as a model of an arterial segment, the solution of the Navier Stokes differential equations delivers a relation between the pressure and velocity pulse. There, simulations prove a minimal sensitivity of blood pressure concerning blood density, blood viscosity and damping. Hence, these parameters can be regarded interindividually as constants. Blood pressure is essentially sensitive on the pulse wave velocity, the velocity pulse, the arterial diameter and the reflection coefficient. To perform measurements, a system was built up comprising at least one laser Doppler blood flow sensor, a high performance DSP hardware and a PC. After individual initial Riva Rocci calibration, arterial diameter and reflection coefficient can be determined. Flow and pulse wave velocity and thus blood pressure can be calculated measuring continuously at least one velocity pulse with the laser Doppler flow sensor at a superficial artery like the a. radialis and simultaneously another cardiovascular signal like an ECG or another flow pulse at a different site of the artery. As a first result, high linear correlations between systolic blood pressure and pulse transit time were obtained. !17
机译:摘要:该报告描述了一种无袖套无创血压测定方法。关于弹性的,充满液体的管作为动脉节段的模型,Navier Stokes微分方程的解提供了压力和速度脉冲之间的关系。在那里,模拟证明了血压对血液密度,血液粘度和阻尼的最小敏感性。因此,这些参数可以单独地视为常量。血压基本上对脉搏波速度,速度脉搏,动脉直径和反射系数敏感。为了进行测量,建立了一个系统,该系统包括至少一个激光多普勒血流传感器,高性能DSP硬件和PC。经过单独的初始Riva Rocci校准后,可以确定动脉直径和反射系数。可以使用激光多普勒流量传感器在像a这样的浅动脉处连续测量至少一个速度脉冲,从而计算出流速和脉搏波的速度,进而计算出血压。 is动脉以及同时在心血管不同部位的另一个心电图信号(例如ECG或另一个流量脉冲)。作为第一结果,获得了收缩压与脉搏传播时间之间的高线性相关性。 !17

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