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体外研究左心室辅助装置速度和搏动模式对室内血流动力学的影响。

In Vitro Investigation of the Effect of Left Ventricular Assist Device Speed and Pulsatility Mode on Intraventricular Hemodynamics.

机构信息

Mechanical Engineering, University of Washington, Seattle, WA, USA.

Biomedical and Chemical Engineering and Sciences, Florida Institute of Technology, Melbourne, FL, USA.

出版信息

Ann Biomed Eng. 2021 May;49(5):1318-1332. doi: 10.1007/s10439-020-02669-9. Epub 2020 Oct 30.

DOI:10.1007/s10439-020-02669-9
PMID:33128182
Abstract

Stroke has become the main cause of mortality and morbidity in patients treated with Left Ventricular Assist Devices (LVADs). The hemodynamics of the left ventricle are altered by the implantation of an LVAD, with the increase of thrombogenic flow patterns, such as stagnation regions. Time-resolved stereo particle image velocimetry (Stereo-PIV) measurements of the flow inside a patient-specific model of the left ventricle (LV) implanted with an LVAD were performed. The effects of LVAD speed, peripheral resistance and afterload were investigated. The impact of activating the LVAD pulsatility mode (periodic speed modulation) was also evaluated. Analysis of the velocity measurements in two orthogonal planes revealed stagnation zones which may be favorable to thrombus formation. Increasing LVAD speed, despite increasing the flow rate through the inflow cannula, does not automatically result in smaller stagnation regions. These results demonstrated the strong interdependence of peripheral resistance, afterload and flow through the LVAD. As a consequence, the pulsatility mode showed very limited effect on overall flow rate. However, it did reduce the size of high stagnation areas. This study showed how LVAD speed, peripheral resistance and afterload impact the complex intraventricular flow patterns in a ventricle implanted with an LVAD and quantify their thrombogenic risk.

摘要

脑卒中已成为接受左心室辅助装置(LVAD)治疗的患者死亡和发病的主要原因。LVAD 的植入改变了左心室的血液动力学,增加了血栓形成的血流模式,如停滞区。对植入 LVAD 的患者特定左心室(LV)模型内部的流动进行了时间分辨立体粒子图像测速(Stereo-PIV)测量。研究了 LVAD 速度、外周阻力和后负荷的影响。还评估了激活 LVAD 搏动模式(周期性速度调制)的影响。对两个正交平面的速度测量结果的分析显示出停滞区,这可能有利于血栓形成。尽管通过流入管增加了流速,但增加 LVAD 速度并不一定会导致较小的停滞区。这些结果表明外周阻力、后负荷和流经 LVAD 的流量之间存在很强的相互依赖性。因此,搏动模式对整体流量的影响非常有限。然而,它确实减少了高停滞区的大小。本研究展示了 LVAD 速度、外周阻力和后负荷如何影响植入 LVAD 的心室中的复杂室内流动模式,并量化了它们的血栓形成风险。

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