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A pilot in silico modeling-based study of the pathological effects on the biomechanical function of tricuspid valves

机译:三尖瓣生物力学效应的基于硅建模的飞行员

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Current clinical assessment of functional tricuspid valve regurgitation relies on metrics quantified from medical imaging modalities. Although these clinical methodologies are generally successful, the lack of detailed information about the mechanical environment of the valve presents inherent challenges for assessing tricuspid valve regurgitation. In the present study, we have developed a finite element-based in silico model of one porcine tricuspid valve (TV) geometry to investigate how various pathological conditions affect the overall biomechanical function of the TV. There were three primary observations from our results. Firstly, the results of the papillary muscle (PM) displacement study scenario indicated more pronounced changes in the TV biomechanical function. Secondly, compared to uniform annulus dilation, nonuniform dilation scenario induced more evident changes in the von Mises stresses (83.8-125.3 kPa vs 65.1-84.0 kPa) and the Green-Lagrange strains (0.52-0.58 vs 0.47-0.53) for the three TV leaflets. Finally, results from the pulmonary hypertension study scenario showed opposite trends compared to the PM displacement and annulus dilation scenarios. Furthermore, various chordae rupture scenarios were simulated, and the results showed that the chordae tendineae attached to the TV anterior and septal leaflets may be more critical to proper TV function. This in silico modeling-based study has provided a deeper insight into the tricuspid valve pathologies that may be useful, with moderate extensions, for guiding clinical decisions.Novelty Statement The novelties of the research are summarized below:A comprehensive in silico pilot study of how isolated functional tricuspid regurgitation pathologies and ruptured chordae tendineae would alter the tricuspid valve function;An extensive analysis of the tricuspid valve function, including mechanical quantities (eg, the von Mises stress and the Green-Lagrange strain) and clinically-relevant geometry metrics (eg, the tenting area and the coaptation height); andA developed computational modeling pipeline that can be extended to evaluate patient-specific tricuspid valve geometries and enhance the current clinical diagnosis and treatment of tricuspid regurgitation.
机译:功能性三尖瓣反流的目前临床评估依赖于医学成像方式量化的度量。虽然这些临床方法通常是成功的,但缺乏关于阀门机械环境的详细信息,呈现出用于评估三尖瓣反流的固有挑战。在本研究中,我们开发了一种基于一个猪三尖瓣(TV)几何的硅模型的基于硅模型,以研究各种病理条件如何影响电视的整体生物力学功能。我们的结果有三个主要观察结果。首先,乳头状肌肉(PM)位移研究方案的结果表明电视生物力学功能更加明显的变化。其次,与均匀的环扩张相比,非均匀扩张情景诱导了von MISES应力的更明显的变化(83.8-125.3 kPa vs 65.1-84.0 KPA)和三个电视的绿色拉格兰菌株(0.52-0.58 vs 0.47-0.53)传单。最后,与PM位移和环扩张情景相比,肺动脉高血压研究方案的结果表现出相反的趋势。此外,模拟了各种Chordae破裂情景,结果表明,连接到电视前和隔膜小叶的Chordae趋势可能对适当的电视功能更为关键。这在基于Silico建模的研究中,对Tricuspid瓣膜病理提供了更深入的洞察力,这些阀门病理可能是有用的,具有中等的延伸,用于指导临床决定.Novelty声明该研究的Noveltize总结如下:硅试点研究综合孤立的功能性三尖瓣反流病理和破裂的Chordae培养结构将改变三尖瓣功能;对三尖瓣功能进行广泛的分析,包括机械量(例如,von Mises应力和绿色拉格朗日应变)和临床相关的几何指标(例如, ,纸张区域和拟合高度); ANDA开发了计算建模管道,可以扩展到评估患者特异性三刺瓣几何形状,并增强目前的临床诊断和治疗三尖瓣反流。

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