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一种确定体外反搏最佳阶段的分析方法。

An analytical approach to the determination of optimal phasing for external counterpulsation.

作者信息

Lin J, Hui J C, Birtwell W C, Soroff H S

出版信息

J Bioeng. 1978 Apr;2(1-2):167-75.

PMID:681317
Abstract

An inhomogeneous linear one-dimensional mathematical model is constructed as a conceptual approach to the study of the effects of External Counterpulsation (ECP) on the pressure and flow at the root of the aorta. The optimal operation of ECP is defined by two conditions: (1) minimization of the mean systolic pressure; and (b) maximization of the ratio of diastolic area over systolic area under the total pressure curve. The phase shift of the external pressure is determined so as to satisfy these two requirements. It is demonstrated within our approximation that with a given magnitude of external pressure, the phase shifts that satisfy these two requirements are the same. These phase shifts are linear functions of the systolic fraction of the total cardiac period, and depend on the time for the external wave to travel from the site of application up the vascular bed to the root of the aorta, plus the reflection contributions. Even though these results are derived from a simple model far from the complexity of the actual vasculature, the basic concepts would remain valid even if more complex mathematical treatments would have been used.

摘要

构建了一个非均匀线性一维数学模型,作为研究体外反搏(ECP)对主动脉根部压力和血流影响的一种概念性方法。ECP的最佳操作由两个条件定义:(1)平均收缩压最小化;(b)总压力曲线下舒张面积与收缩面积之比最大化。确定外部压力的相移以满足这两个要求。在我们的近似范围内证明,在给定外部压力大小的情况下,满足这两个要求的相移是相同的。这些相移是整个心动周期收缩期分数的线性函数,并且取决于外部波从施加部位沿血管床传播到主动脉根部的时间,加上反射贡献。尽管这些结果是从一个远离实际脉管系统复杂性的简单模型得出的,但即使使用更复杂的数学处理方法,基本概念仍然有效。

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