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冠状动脉循环对心率突然变化的动态响应的系统分析。

System analysis of the dynamic response of the coronary circulation to a sudden change in heart rate.

作者信息

Dankelman J, Stassen H G, Spaan J A

机构信息

Laboratory for Measurement & Control, Faculty of Mechanical Engineering & Marine Technology, Delft University of Technology, The Netherlands.

出版信息

Med Biol Eng Comput. 1990 Mar;28(2):139-48. doi: 10.1007/BF02441769.

Abstract

In this study the response of driving pressure/flow ration on an abrupt change in heart rate was analysed. The difference between the response obtained with constant pressure and constant flow perfusion was also studied. The responses show a fast initial reversed phase followed by a slow phase caused by regulation. To test whether the initial phase could be the result of mechanical changes in the coronary circulation, a model for regulation was extended by the addition of four different mechanical models originating from the literature. These extended models were able to explain the fast initial phase. However, the mechanical model consisting of an intramyocardial compliance (C = 0.08 ml mm Hg-1 100 g-1) with a variable venous resistance, and the model consisting of a waterfall and a small compliance (C = 0.007 ml mm Hg-1 100g-1) both explained these responses best. The analysis showed that there is no direct relationship between rate of change of vascular tone and rate of change of pressure/flow ratio. However, on the basis of the two extended models, it can be predicted that the half-time for the response of regulation to be complete is about 9s with constant pressure perfusion and 15 s with constant flow perfusion.

摘要

在本研究中,分析了驱动压力/流量比在心率突然变化时的反应。还研究了恒压灌注和恒流灌注所获得反应之间的差异。这些反应显示出一个快速的初始反向阶段,随后是由调节引起的缓慢阶段。为了测试初始阶段是否可能是冠状动脉循环中机械变化的结果,通过添加来自文献的四种不同机械模型对调节模型进行了扩展。这些扩展模型能够解释快速的初始阶段。然而,由具有可变静脉阻力的心肌内顺应性(C = 0.08 ml mmHg-1 100 g-1)组成的机械模型,以及由瀑布模型和小顺应性(C = 0.007 ml mmHg-1 100g-1)组成的模型,都能最好地解释这些反应。分析表明,血管张力变化率与压力/流量比变化率之间没有直接关系。然而,基于这两个扩展模型,可以预测,在恒压灌注下调节反应完成的半衰期约为9秒,在恒流灌注下为15秒。

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