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心内血流模式改变对缺血性二尖瓣反流模型中二尖瓣叶动力学的影响。

Alterations in Intracardiac Flow Patterns Affect Mitral Leaflets Dynamics in a Model of Ischemic Mitral Regurgitation.

机构信息

Department of Surgery, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA, USA.

Department of Bioengineering, School of Engineering and Applied Sciences, University of Pennsylvania, Philadelphia, PA, USA.

出版信息

Cardiovasc Eng Technol. 2021 Dec;12(6):640-650. doi: 10.1007/s13239-021-00567-2. Epub 2021 Aug 31.

Abstract

PURPOSE

This study was to evaluate the effects of ischemic mitral regurgitation (IMR) on vortex formation and leaflet dynamics using an established porcine infarct model of IMR.

METHODS

Using direct coronary ligation, five animals were subjected to a posterolateral myocardial infarction (MI) followed by an MRI at 12-weeks post MI. MR imaging consisted of 4D time-resolved left ventricular (LV) flow, full coverage 2D LV cine, and high resolution 2D cine of mitral valve dynamics. Five additional naïve animals underwent identical imaging protocols to serve as controls. Image analysis was performed to obtain mitral transvalvular flows as well as LV volumes throughout the cardiac cycle. In addition, anterior to posterior mid-leaflet tip distances were measured throughout the cardiac cycle for determination of temporal leaflet dynamics.

RESULTS

It was found IMR caused asymmetric vortex ring formation with the anterior vortex having a lower vorticity relative to its posterior counterpart. In contrast, normal ventricles create symmetric and tightly curled vortices in the basal chamber just underneath the mitral leaflets which conserve kinetic energy and aid in effective ejection. IMR animals were also evaluated for leaflet separation and were found to have a greater leaflet opening and achieved peak vorticity and peak leaflet opening later than control animals.

CONCLUSION

In conclusion, this study shows the effects that altered vortex formation, due to IMR, can have on ventricular filling and leaflet dynamics. These findings have important implications for understanding blood flow through the dilated heart and how ring annuloplasty and volume reduction interventions may influence mitral valve dynamics.

摘要

目的

本研究旨在通过已建立的猪缺血性二尖瓣反流(IMR)模型,评估缺血性二尖瓣反流对涡流形成和瓣叶动力学的影响。

方法

通过直接冠状动脉结扎,将 5 只动物造成后外侧心肌梗死(MI),并在 MI 后 12 周进行 MRI。MR 成像包括 4D 时间分辨左心室(LV)流动、全覆盖 2D LV 电影和二尖瓣动力学的高分辨率 2D 电影。另外 5 只未经处理的动物接受了相同的成像方案作为对照。进行图像分析以获得整个心动周期的二尖瓣跨瓣流量和 LV 容积。此外,还测量了整个心动周期中瓣叶中部前后尖端的距离,以确定瓣叶的时间动力学。

结果

研究发现,IMR 导致不对称的涡流环形成,前涡流的涡度相对于后涡流较低。相比之下,正常心室在二尖瓣瓣叶下方的基底部形成对称且紧密卷曲的涡流,从而保持动能并有助于有效射血。还对 IMR 动物的瓣叶分离进行了评估,发现瓣叶开口更大,并且达到峰值涡度和瓣叶最大开口的时间比对照动物晚。

结论

总之,这项研究表明,由于 IMR 导致的涡流形成的改变会对心室充盈和瓣叶动力学产生影响。这些发现对理解扩张心脏中的血流以及环形瓣环成形术和容积减少干预如何影响二尖瓣动力学具有重要意义。

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