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Effect of left atrial ligation-driven altered inflow hemodynamics on embryonic heart development: clues for prenatal progression of hypoplastic left heart syndrome

机译:左心房结扎驱动的流入血流动力学对胚胎心脏发育的影响:软糖左心综合征产前进展的线索

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Congenital heart defects (CHDs) are abnormalities in the heart structure present at birth. One important condition is hypoplastic left heart syndrome (HLHS) where severely underdeveloped left ventricle (LV) cannot support systemic circulation. HLHS usually initiates as localized tissue malformations with no underlying genetic cause, suggesting that disturbed hemodynamics contribute to the embryonic development of these defects. Left atrial ligation (LAL) is a surgical procedure on embryonic chick resulting in a phenotype resembling clinical HLHS. In this study, we investigated disturbed hemodynamics and deteriorated cardiac growth following LAL to investigate possible mechanobiological mechanisms for the embryonic development of HLHS. We integrated techniques such as echocardiography, micro-CT and computational fluid dynamics (CFD) for these analyses. Specifically, LAL procedure causes an immediate flow disturbance over atrioventricular (AV) cushions. At later stages after the heart septation, it causes hemodynamic disturbances in LV. As a consequence of the LAL procedure, the left-AV canal and LV volume decrease in size, and in the opposite way, the right-AV canal and right ventricle volume increase. According to our CFD analysis, LAL results in an immediate decrease in the left AV canal WSS levels for 3.5-day (HH21) pre-septated hearts. For 7-day post-septated hearts (HH30), LAL leads to further reduction in WSS levels in the left AV canal, and relatively increased WSS levels in the right AV canal. This study demonstrates the critical importance of the disturbed hemodynamics during the heart valve and ventricle development.
机译:先天性心脏缺陷(CHDS)是出生时心脏结构的异常。一个重要的病症是皮复制左心综合征(HLH),其中严重欠发达的左心室(LV)不能支持全身循环。 HLH通常引发作为局部组织畸形,没有潜在的遗传原因,表明干扰的血液动力学有助于这些缺陷的胚胎发育。左心房连接(LAL)是胚胎小鸡的外科手术,导致类似临床HLH的表型。在这项研究中,我们研究了扰动的血流动力学和劣化的心脏生长,以研究HLHs的胚胎发育的可能的机械机理机制。我们对这些分析进行综合诸如超声心动图,微型CT和计算流体动力学(CFD)的技术。具体地,LAL过程导致ATRIVENTURY(AV)垫上立即流动干扰。在心脏荚膜后的后期阶段,它导致LV中的血流动力学扰动。由于LAL程序的结果,左移动运河和LV体积的尺寸减小,并以相反的方式,右移动运河和右心室体积增加。根据我们的CFD分析,LAL导致左侧AV运河WSS水平的直接减少3.5天(HH21)预先培养的心。对于7天后缘心脏(HH30),LAL导致左侧AV运河的WSS水平进一步降低,并且在右移AV运河中相对增加了WSS水平。本研究表明,在心脏瓣膜和心室发育过程中受到干扰的血流动力学的关键重要性。

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