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新型主动脉内左心室辅助装置的血液动力学模拟研究。

Hemodynamic simulation study of a novel intra-aorta left ventricular assist device.

机构信息

From the Department of Biomechanics, School of Life Science and Bioengineering, Beijing University of Technology, Beijing, China.

出版信息

ASAIO J. 2012 Sep-Oct;58(5):462-9. doi: 10.1097/MAT.0b013e318268eaf7.

Abstract

The intra-aorta pump proposed here is a novel left ventricular assist device (LVAD). The mathematic model and the in vitro experiment demonstrate that the pump can satisfy the demand of human blood perfusion. However, the implantation of LVAD will change the fluid distribution or even generate a far-reaching influence on the aorta. At present, the characteristics of endaortic hemodynamics under the support of intra-aorta pump are still unclear. In this article, a computational fluid dynamics study based on a finite-element method was performed for the aorta under the support of intra-aorta pump. To explore the hemodynamic influence of intra-aorta pump on aorta, fully coupled fluid-solid interaction simulation was used in this study. From the flow profiles, we observed that the maximum disturbed flow and nonuniform flow existed within the aortic arch and the branches of the aortic arch. Flow waveforms at the inlets of aortas were derived from the lumped parameter model that we proposed in our previous study. The results demonstrated that the intra-aorta pump increased the blood flow in the aorta to normal physiologic conditions, but decreased the pulsatility of the flow and pressure. The pulsatility index changed from 2,540 to 1,370. The pressure gradient (PG) for heart failure conditions was 18.88 mm Hg/m vs. 25.51 mm Hg/m for normal physiologic conditions; for intra-aorta pump assist conditions, normal PG value could not be regained. Furthermore, our experimental results showed that the wall shear stress (WSS) of aorta under heart failure and normal physiologic conditions were 1.5 and 6.3 dynes/cm, respectively. The intra-aorta pump increased the WSS value from 1.5 to 4.1 dynes/cm.

摘要

这里提出的主动脉内泵是一种新型的左心室辅助装置(LVAD)。数学模型和体外实验表明,该泵可以满足人体血液灌注的需求。然而,LVAD 的植入会改变血液在主动脉内的分布,甚至会对主动脉产生深远的影响。目前,在主动脉内泵支持下的主动脉内血流动力学特性尚不清楚。在本文中,我们采用基于有限元法的计算流体动力学研究方法,对主动脉内泵支持下的主动脉进行了研究。为了探讨主动脉内泵对主动脉的血流动力学影响,本研究采用完全耦合流固相互作用模拟。从流场图可以看出,在主动脉弓和主动脉弓分支处存在最大扰流和非均匀流。主动脉入口处的血流波形是根据我们之前研究中提出的集总参数模型得到的。结果表明,主动脉内泵使主动脉内的血流增加到正常生理状态,但降低了血流和压力的脉动性。脉动指数从 2540 变为 1370。心力衰竭条件下的压力梯度(PG)为 18.88mmHg/m,而正常生理条件下为 25.51mmHg/m;对于主动脉内泵辅助条件,无法恢复正常的 PG 值。此外,我们的实验结果表明,心力衰竭和正常生理条件下主动脉的壁面切应力(WSS)分别为 1.5 和 6.3 达因/厘米。主动脉内泵将 WSS 值从 1.5 增加到 4.1 达因/厘米。

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