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缺血条件下的冠状动脉循环分析。

Analysis of coronary circulation under ischaemic conditions.

作者信息

Manor D, Sideman S, Dinnar U, Beyar R

机构信息

Julius Silver Institute, Department of Biomedical Engineering, Technion-Israel Institute of Technology, Haifa.

出版信息

Med Biol Eng Comput. 1994 Jul;32(4 Suppl):S123-32. doi: 10.1007/BF02523338.

Abstract

Coronary flow patterns and pressure/flow relationships in coronary vessels with arterial stenoses are examined by using a model that combines the flow in the epicardial arterial tree with the intramyocardial perfusion. By using appropriate resistive elements, the model allows for the autoregulation of the vascular bed and for the development of coronary collaterals. Arterial flow predictions are compared to canine data. Coronary stenosis is simulated by a local pressure drop caused by a combination of viscous and inertial forces; stenosis with a constant cross-sectional area is compared to a dynamic stenosis in which the cross-sectional area is a function of the instantaneous transmural pressure. Simulation results predict that the normal phasic flow patterns in the epicardial arteries are unaffected up to 73% reduction in cross-sectional area, while the average flow remains unchanged up to 90% area reduction. At the critical level of 90% rigid stenosis, the autoregulation is saturated and the phasic nature of the arterial flow is severely damped. Dynamic stenoses demonstrate hysteresis loops of the instantaneous pressure/flow relationship. Theoretical predictions of local and global values are in excellent agreement with experimental measurements, indicating that the proposed approach can be used to realistically describe the coronary flow in the ischemic heart.

摘要

通过使用一个将心外膜动脉树中的血流与心肌内灌注相结合的模型,来研究患有动脉狭窄的冠状动脉血管中的血流模式以及压力/血流关系。通过使用适当的电阻元件,该模型可以实现血管床的自动调节以及冠状动脉侧支循环的形成。将动脉血流预测结果与犬类数据进行比较。冠状动脉狭窄通过由粘性力和惯性力组合引起的局部压降来模拟;将具有恒定横截面积的狭窄与横截面积是瞬时跨壁压力函数的动态狭窄进行比较。模拟结果预测,在心外膜动脉中,正常的搏动血流模式在横截面积减少高达73%时不受影响,而平均血流在面积减少高达90%时保持不变。在90%刚性狭窄的临界水平,自动调节达到饱和,动脉血流的搏动特性受到严重抑制。动态狭窄表现出瞬时压力/血流关系的滞后环。局部和全局值的理论预测与实验测量结果高度一致,表明所提出的方法可用于真实描述缺血性心脏中的冠状动脉血流。

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