首页> 外文会议>ASME Bioengineering Conference >MODELING THE INTERACTION BETWEEN THE CORONARY SINUS AND THE PROXIMAL ANCHOR STENT IN PERCUTANEOUS TRANSVENOUS MITRAL ANNUOLPLASTY
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MODELING THE INTERACTION BETWEEN THE CORONARY SINUS AND THE PROXIMAL ANCHOR STENT IN PERCUTANEOUS TRANSVENOUS MITRAL ANNUOLPLASTY

机译:模拟冠状动脉窦和近端锚杆在经皮叉桡骨型二尖党Annuolasty术中的相互作用

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Surgical treatment of severe functional mitral regurgitation (MR) often involves mitral annuloplasty, a procedure where a flexible or rigid annuloplasty ring is used to downsize the dilated mitral valve annulus (MA) and improve leaflet apposition by posterior annular correction. Recently various minimally invasive percutaneous transvenous mitral annuloplasty (PTMA) devices have been tested in patients who are not suitable candidates for a surgical procedure involving a thoracotomy. The approach is based on the concept that by utilizing the parallel location of the coronary sinus (CS) to the mitral annulus, a device, that can reshape the annulus, can be percutaneously deployed within the coronary sinus (CS) and the great cardiac vein (GCV). When the implanted device deforms, it shortens the MA anterior-posterior dimension and decreases mitral regurgitation (MR) (Fig. 1). Although the approach has been shown to be promising, PTMA device dysfunction and fatigue fracture have been reported in several first-in-human clinical trials (1). We hypothesize that quantitative understanding of the biomechanical interaction between the venous tissue, the mitral apparatus, and the PTMA device can improve the efficacy of the PTMA treatment of MR. In this study, we aim to model interactions between the PTMA proximal anchor and the CS using computational tools.
机译:严重功能二尖瓣反流(MR)的外科治疗通常涉及二尖瓣环形成形术,其中柔性或刚性环形成形术环用于使扩张的二尖瓣环(MA)缩小,并通过后部环形校正改善小叶置位。最近,各种微创经皮吞咽型二尖瓣成形术(PTMA)装置已经在不适合涉及胸廓切开术的外科手术的患者中进行测试。该方法基于该概念,通过利用冠状动脉窦(CS)的并联位置到二尖瓣环,可以重塑环形的装置,可以在冠状动脉窦(CS)和伟大的心脏静脉内进行皮质部署(GCV)。当植入装置变形时,它缩短了MA前后尺寸并降低二尖瓣流反流(MR)(图1)。虽然该方法已被证明是有希望的,但在几种先进的临床试验(1)中已经报道了PTMA器件功能障碍和疲劳骨折。我们假设对静脉组织,二尖瓣和PTMA装置之间的生物力学相互作用的定量理解可以提高MR的PTMA治疗的疗效。在本研究中,我们的目标是使用计算工具模拟PTMA近端锚和CS之间的相互作用。

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