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A Steady-State Transfer Function Analysis of Portions of the Circulatory System Using Indicator Dilution Techniques

机译:利用指示剂稀释技术对循环系统各部分进行稳态传递函数分析

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摘要

A digital computer program has been developed whereby the distribution of dye-particle transit times across circulatory pathways can be found from recordings of upstream and downstream indicator-dilution curves. This distribution or transfer function is computed from Fourier-series representations of the upstream and downstream indicator curves and makes possible, for the first time, the calculation of transit-time distributions independent of the effects of recirculating dye. Since a discontinuity is introduced into the tails of the upstream and downstream curves at the end of sampling, the method requires an iterative approach in the termination of the upstream and downstream curves. The accuracy of the calculated distribution pattern is determined by comparison of the recorded downstream curve with the results of the convolution of the recorded upstream curve and computed transfer function. Effects of noise, bandwidth and sampling rate have been investigated through the use of analog computer models of the circulatory pathways. These studies show that the transfer-function description is limited by the bandwidth of the upstream (input) curve. Noise, or variations in magnitude and phase angle of input- and output-curve frequencies, tends to introduce oscillations into the time-domain representation of the transfer function as does the use of too few frequencies. This means that in biological systems the upstream sampling site must be relatively close to the dye injection site if the input and output sampling sites are close together. Circulatory transfer functions have been obtained from dogs across their lower extremity, renal and systemic circulations before, during and following moderate exercise (walking on treadmill at two miles per hour for four minutes).
机译:已经开发了一种数字计算机程序,通过该程序可以从上游和下游指示剂稀释曲线的记录中找到跨循环路径的染料颗粒传输时间的分布。该分布或传递函数是根据上游和下游指示剂曲线的傅里叶级数表示来计算的,这使得首次计算渡越时间分布成为可能,而与再循环染料的作用无关。由于在采样结束时将不连续性引入上游曲线和下游曲线的尾部,因此该方法需要在上游曲线和下游曲线的终止处采用迭代方法。通过比较记录的下游曲线与记录的上游曲线和计算的传递函数的卷积结果,可以确定计算出的分布图的准确性。噪声,带宽和采样率的影响已通过使用循环路径的模拟计算机模型进行了研究。这些研究表明,传递函数的描述受上游(输入)曲线带宽的限制。噪声或输入和输出曲线频率的幅值和相位角的变化,往往会导致振荡,将传递函数的时域表示引入振荡,就像使用频率太少一样。这意味着在生物系统中,如果输入和输出采样点彼此靠近,则上游采样点必须相对靠近染料注入点。在进行适度运动(以每小时两英里的速度在跑步机上行走四分钟)之前,期间和之后,已经从狗的下肢,肾脏和全身循环中获得了循环传递功能。

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