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将动脉脉搏分解为前向波和反向波作为确定特征阻抗的一种方法。

The resolution of arterial pulses into forward and backward waves as an approach to the determination of the characteristic impedance.

作者信息

Sperling W, Bauer R D, Busse R, Körner H, Pasch T

出版信息

Pflugers Arch. 1975 Mar 26;355(3):217-27. doi: 10.1007/BF00583685.

Abstract

Pressure and flow recordings from a given site in an artery can be used for the resolution of the pulse wave into its forward and backward components if the characteristic impedance (Z) is known. The principle of this method was reported by von Kries in 1892. In the present work, the procedure is first applied to a theoretical, non-uniform tube model. The characteristic impedance of the model are assumed to be real magnitudes. From the results it is seen that the calculated backward wave provides a criterion which indicates whether the true value of Z actually has been used for the resolving procedure. If, as in the case of natural pulses, Z is not known, its value can be obtained by repeatedly performing the resolving procedure using various values of Z, and choosing the value of Z employed to calculate the backward wave which best fits the criterion. The method is demonstrated on pulses of the abdominal aorta and carotid artery of the dog. The results are compared with the average values of the input impedance in the higher frequency range.

摘要

如果已知特征阻抗(Z),则动脉中给定部位的压力和流量记录可用于将脉搏波分解为其向前和向后的分量。这种方法的原理由冯·克里斯于1892年报道。在目前的工作中,该程序首先应用于一个理论上的非均匀管模型。假设该模型的特征阻抗为实数量值。从结果可以看出,计算出的反向波提供了一个标准,该标准表明Z的真实值是否实际上已用于分解过程。如果像在自然脉搏的情况下那样,Z未知,则可以通过使用Z的各种值反复执行分解过程,并选择用于计算最符合该标准的反向波的Z值来获得其值。该方法在狗的腹主动脉和颈动脉的脉搏上得到了验证。结果与高频范围内输入阻抗的平均值进行了比较。

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