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The electrical impedance of pulsatile blood flowing through rigid tubes: an experimental investigation

机译:流经刚性管的搏动性血液的电阻抗:实验研究

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摘要

Small fluctuations present in an Impedance Cardiogram are often dismissed as noise, but may be due to unknown physiological origins. One such origin suggested in literature is the impedance variation induced by changes in red blood cell orientation during pulsatile blood flow. This study investigated the relationship between the impedance, velocity and acceleration of blood as it pulses during the cardiac cycle. This was achieved experimentally by pumping blood through rigid tubes in a mock circulatory system while measuring the impedance and velocity of the blood. Analysis of collected data confirms that impedance responds to changes in both velocity and acceleration. During acceleration, impedance and velocity are linearly related. However, during deceleration, it was found that the relationship between impedance and velocity is non linear. As velocity increases, the relationship becomes linear with a reducing slope. This indicates that for the same change in acceleration at low velocities, the impedance response is significantly larger than at higher velocities. Experimental data demonstrating these trends is presented for varied pulse rates (20 – 100 beats per minute), stroke volumes (20 – 60 ml) and systolic/diastolic ratios (50/50 – 30/70).
机译:阻抗心电图中存在的小波动通常会被消除为噪音,但可能是由于未知的生理起源所致。文献中提出的这样一种起源是在脉动性血流期间由红细胞取向的变化引起的阻抗变化。这项研究调查了在心动周期中血液脉动时阻抗,速度和加速度之间的关系。这是通过在模拟循环系统中通过刚性管道泵送血液同时测量血液的阻抗和速度来实现的。对收集到的数据的分析证实,阻抗对速度和加速度的变化均具有响应。在加速期间,阻抗和速度成线性关系。然而,在减速期间,发现阻抗与速度之间的关系是非线性的。随着速度增加,该关系以减小的斜率变为线性。这表明,对于低速加速度的相同变化,阻抗响应明显大于高速度时的阻抗响应。实验数据表明了这些趋势,包括各种脉搏频率(每分钟20-100次搏动),每搏量(20-60毫升)和收缩/舒张比(50 / 50-30 / 70)。

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