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Determination of instantaneous arterial blood pressure from bio-impedance signal

机译:从生物阻抗信号确定瞬时动脉血压

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The objective of this study was to determine the instantaneous arterial blood pressure by the peripheral bio-impedance. To achieve this goal, the equation of Ben Salah and Flaud, initially meant to determine the instantaneous aortic pressure according to the signal of thoracic bioimpedance, was successfully applied for the determination of the instantaneous arterial pressure according to the signal of peripheral bio-impedance. The problem was that this equation depends directly on systolic and diastolic pressures which were manually obtained by an electronic sphygmomanometer. Yet the objective was to determine the instantaneous arterial blood pressure without having to measure beforehand diastolic and systolic pressures by the electronic sphygmomanometer. To solve this problem, interpolation function linking respectively the pulse pressure to the impedance variation (with 2,97% error for the determination of the systolic pressure) and the diastolic pressure to the basic impedance were determined (with an error close to zero for the determination of the diastolic pressure). With the proposed method, for each new measurement on a subject we acquire its bioimpedance signal, and then use the interpolation functions to deduce its diastolic and systolic pressures and then, using the Ben Salah equation, in real time, to determine its instantaneous arterial blood pressure.? The bio-impedance signal processing, the user interface and the display were managed by LabVIEW.
机译:这项研究的目的是通过周围生物阻抗来确定瞬时动脉血压。为了实现这个目标,本·萨拉赫和弗拉德方程式最初是根据胸腔生物阻抗信号确定瞬时主动脉压力,后来成功地用于根据周围生物阻抗信号确定瞬时动脉压。问题在于,该方程式直接取决于通过电子血压计手动获得的收缩压和舒张压。然而,其目的是确定瞬时动脉血压,而不必通过电子血压计预先测量舒张压和收缩压。为解决此问题,确定了将脉冲压力分别与阻抗变化(确定收缩压的误差为2.97%)和舒张压与基本阻抗相关联的插值函数(其误差接近于零)。确定舒张压。使用提出的方法,对于对象的每次新测量,我们都获取其生物阻抗信号,然后使用插值函数推导其舒张压和收缩压,然后使用Ben Salah方程实时确定其瞬时动脉血压力。?生物阻抗信号处理,用户界面和显示均由LabVIEW管理。

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