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首页> 外文期刊>The Journal of heart valve disease >Effects of papillary muscle position on in-vitro dynamic strain on the porcine mitral valve.
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Effects of papillary muscle position on in-vitro dynamic strain on the porcine mitral valve.

机译:乳头肌位置对猪二尖瓣体外动态应变的影响。

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BACKGROUND AND AIM OF THE STUDY: Improved knowledge of mitral valve (MV) mechanics is essential to understand normal MV function and design and evaluate new surgical repair procedures. Initially, the dynamic deformation of the central region of the porcine MV anterior leaflet was quantified under simulated physiological conditions to explore the effects of varying papillary muscle (PM) position. METHODS: Fresh porcine MVs were mounted in an in-vitro physiological flow loop. The PM positions were set to normal, taut, and slack states to simulate physiological and pathological PM positions. Leaflet deformation was measured by tracking the displacement of 16 markers (approximately 250 microm diameter) placed in a 5 x 5 mm section of the central region of the anterior leaflet, approximately 5 mm from the annulus and coaptation line. Local leaflet tissue strain and strain rates were calculated from measured displacements under dynamic loading conditions. A total of 11 mitral valves was studied. RESULTS: Under the normal PM positional state, the average areal strain rate during valve closure was typically approximately 620% per second. While not measurably altering the maximal areal strain rate, the slack PM position led to a delay in complete valve closure and more rapid leaflet loading (defined as delta transvalvular pressure/delta areal strain) in late systole compared to the other two PM positions. CONCLUSION: It was shown that PM position influenced the MV loading process in the central area of the anterior leaflet. The slack PM position led to a delay in complete valve closure and more rapid leaflet loading in late systole. This increase in loading rate may have long-term consequences in MV function.
机译:研究背景和目的:增进对二尖瓣(MV)力学的了解对于理解正常的MV功能以及设计和评估新的外科修复程序至关重要。最初,在模拟的生理条件下对猪MV前瓣的中央区域的动态变形进行了定量,以探讨乳头肌(PM)位置变化的影响。方法:将新鲜的猪MV安装在体外生理流动回路中。将PM位置设置为正常,绷紧和松弛状态,以模拟生理和病理PM位置。通过跟踪放置在前小叶中心区域的5 x 5 mm区域(距环和接合线约5 mm)的16 x标记(约250微米直径)的位移来测量小叶变形。根据在动态载荷条件下测得的位移计算局部小叶组织应变和应变率。共研究了11个二尖瓣。结果:在正常的PM位置状态下,阀门关闭期间的平均面应变率通常约为620%/秒。与其他两个PM位置相比,虽然无法测量地改变最大面应变率,但松弛的PM位置导致了完全瓣膜闭合的延迟和收缩末期更快速的小叶负荷(定义为经瓣静脉压/ delta面应变)。结论:表明PM位置影响前小叶中心区域的MV加载过程。松弛的PM位置导致完全瓣膜关闭延迟,并在收缩末期更快地加载小叶。负载率的增加可能会对MV功能产生长期影响。

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