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通过计算流体动力学确定的三维左心室收缩期和舒张期血流的流动模式。

Flow patterns in three-dimensional left ventricular systolic and diastolic flows determined from computational fluid dynamics.

作者信息

Taylor T W, Yamaguchi T

机构信息

Department of Bio-Medical Engineering, School of High-Technology for Human Welfare, Tokai University, Shizuoka, Japan.

出版信息

Biorheology. 1995 Jan-Feb;32(1):61-71. doi: 10.3233/bir-1995-32105.

Abstract

A realistic model of the left ventricle of the heart was previously constructed, using a cast from a dog heart which was in diastole. Previous studies of the three-dimensional heart model were conducted in systole only. The purpose of this investigation was to extend the model to both systole and diastole, and to determine what the effect of a previous cardiac cycle was on the next cardiac cycle. The 25.8 cc ventricular volume was reduced by 40% in 0.25 seconds, then increased to the original volume in another 0.25 seconds and then allowed to rest for 0.25 seconds. Runs done with an ejection fraction of 60% showed little variation from one cardiac cycle to another after the third cardiac cycle was completed; the maximum velocity could vary by over 30% between the first and second cardiac cycles. In systole, centerline and cross-sectional velocity vectors greatly increased in magnitude at the aortic outlet. Most of the pressure drop occurred in the top 15% of the heart. The diastolic phase showed complex vortex formation not seen in the systolic contractions; these complex vortices could account for experimentally observed turbulent blood flow fluctuations in the aorta.

摘要

之前利用处于舒张期的狗心脏铸型构建了心脏左心室的逼真模型。以往对三维心脏模型的研究仅在收缩期进行。本研究的目的是将该模型扩展至收缩期和舒张期,并确定前一个心动周期对下一个心动周期有何影响。25.8立方厘米的心室容积在0.25秒内减少40%,然后在接下来的0.25秒内增加至原始容积,随后休息0.25秒。射血分数为60%的运行结果显示,在第三个心动周期完成后,从一个心动周期到另一个心动周期几乎没有变化;在第一个和第二个心动周期之间,最大速度可能相差超过30%。在收缩期,主动脉出口处的中心线和横截面速度矢量大小大幅增加。大部分压力降发生在心脏顶部的15%区域。舒张期显示出收缩期未见的复杂涡旋形成;这些复杂涡旋可能是实验观察到的主动脉内血流湍流波动的原因。

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