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首页> 外文期刊>Journal of biomechanical engineering. >Surface Strains of Porcine Tricuspid Valve Septal Leaflets Measured in Ex Vivo Beating Hearts
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Surface Strains of Porcine Tricuspid Valve Septal Leaflets Measured in Ex Vivo Beating Hearts

机译:在活体心脏跳动的心脏中测量的猪三尖瓣间隔小叶的表面菌株

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Quantification of the tricuspid valve (TV) leaflets mechanical strain is important in order to understand valve pathophysiology and to develop effective treatment strategies. Many of the traditional methods used to dynamically open and close the cardiac valves in vitro via flow simulators require valve dissection. Recent studies, however, have shown that restriction of the atrioventricular valve annuli could significantly change their in vivo deformation. For the first time, the porcine valve leaflets deformation was measured in a passive ex vivo beating heart without isolating and remounting the valve annuli. In particular, the right ventricular apexes of porcine hearts (n = 8) were connected to a pulse-duplicator pump that maintained a pulsatile flow from and to a reservoir connected to the right atrium and the pulmonary arteries. This pump provided a right ventricular pressure (RVP) waveform that closely matched physiological values, leading to opening and closure of the tricuspid and pulmonary valves (PVs). At the midsection of the valve leaflets, the peak areal strain was 9.8 +/- 2.0% (mean +/- standard error). The peak strain was 5.6 +/- 1.1% and 4.3 +/- 1.0% in the circumferential and radial directions, respectively. Although the right ventricle was beating passively, the leaflet peak areal strains closely matched the values measured in other atrioventricular valves (i.e., the mitral valve (MV)) in vivo. This technique can be used to measure leaflet strains with and without the presence of valve lesions to help develop/evaluate treatment strategies to restore normal valve deformation.
机译:为了了解瓣膜病理生理学并制定有效的治疗策略,三尖瓣(TV)小叶机械应力的量化很重要。用于通过流量模拟器在体外动态打开和关闭心脏瓣膜的许多传统方法都需要进行瓣膜解剖。然而,最近的研究表明,房室瓣膜环的限制可显着改变其体内变形。首次在被动离体跳动的心脏中测量了猪瓣膜小叶的变形,而没有分离并重新安装瓣膜环。特别是,猪心脏的右心室顶点(n = 8)连接到脉冲复制器泵,该泵保持脉动血流,血流与连接到右心房和肺动脉的水库相通。该泵提供的右心室压力(RVP)波形与生理值非常匹配,从而导致三尖瓣和肺动脉瓣(PVs)的打开和关闭。在瓣膜小叶的中部,最大的面应变为9.8 +/- 2.0%(平均+/-标准误差)。在圆周方向和径向方向上的峰值应变分别为5.6 +/- 1.1%和4.3 +/- 1.0%。尽管右心室被动跳动,但小叶的峰面积应变与体内其他房室瓣(即二尖瓣(MV))测得的值非常匹配。该技术可用于测量有无瓣膜病变的小叶应变,以帮助制定/评估恢复正常瓣膜变形的治疗策略。

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