首页> 外文期刊>Journal of the Royal Society Interface >Total ellipse of the heart valve: the impact of eccentric stent distortion on the regional dynamic deformation of pericardial tissue leaflets of a transcatheter aortic valve replacement
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Total ellipse of the heart valve: the impact of eccentric stent distortion on the regional dynamic deformation of pericardial tissue leaflets of a transcatheter aortic valve replacement

机译:心脏瓣膜全椭圆形:偏心支架变形对经导管主动脉瓣置换术心包组织小叶区域动态变形的影响

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Transcatheter aortic valve replacements (TAVRs) are a percutaneous alternative to surgical aortic valve replacements and are used to treat patients with aortic valve stenosis. This minimally invasive procedure relies on expansion of the TAVR stent to radially displace calcified aortic valve leaflets against the aortic root wall. However, these calcium deposits can impede the expansion of the device causing distortion of the valve stent and pericardial tissue leaflets. The objective of this study was to elucidate the impact of eccentric TAVR stent distortion on the dynamic deformation of the tissue leaflets of the prosthesis in vitro. Dual-camera stereophotogrammetry was used to measure the regional variation in strain in a leaflet of a TAVR deployed in nominal circular and eccentric (eccentricity index = 28%) orifices, representative of deployed TAVRs in vivo. It was observed that (i) eccentric stent distortion caused incorrect coaptation of the leaflets at peak diastole resulting in a 'peel-back' leaflet geometry that was not present in the circular valve and (ii) adverse bending of the leaflet, arising in the eccentric valve at peak diastole, caused significantly higher commissure strains compared with the circular valve in both normotensive and hypertensive pressure conditions (normotension: eccentric = 13.76 +/- 2.04% versus circular = 11.77 +/- 1.61%, p = 0.0014, hypertension: eccentric = 15.07 +/- 1.13% versus circular = 13.56 +/- 0.87%, p = 0.0042). This study reveals that eccentric distortion of a TAVR stent can have a considerable impact on dynamic leaflet deformation, inducing deleterious bending of the leaflet and increasing commissures strains, which might expedite leaflet structural failure compared to leaflets in a circular deployed valve.
机译:经导管主动脉瓣置换术(TAVR)是外科主动脉瓣置换术的经皮替代方法,用于治疗主动脉瓣狭窄的患者。这种微创手术依赖于TAVR支架的扩张,以使钙化的主动脉瓣小叶相对于主动脉根壁径向移位。但是,这些钙沉积物会阻碍装置的膨胀,从而导致瓣膜支架和心包组织小叶变形。这项研究的目的是阐明偏心TAVR支架变形对假体组织小叶动态变形的影响。双摄像机立体摄影测量法用于测量标称圆形和偏心孔(偏心率= 28%)中部署的TAVR小叶中应变的区域变化,代表体内已部署的TAVR。观察到(i)偏心支架变形导致小叶在舒张峰高峰期的不正确配合,从而导致圆形瓣膜中不存在“剥离”的小叶几何形状,以及(ii)导致小叶的不利弯曲。在血压正常和高血压的情况下,峰值舒张期的偏心瓣膜比圆形瓣膜引起的合流应变显着更高(正常血压:偏心= 13.76 +/- 2.04%,而圆形= 11.77 +/- 1.61%,p = 0.0014,高血压:偏心= 15.07 +/- 1.13%,而圆形= 13.56 +/- 0.87%,p = 0.0042)。这项研究表明,TAVR支架的偏心变形会严重影响小叶的动态变形,引起小叶的有害弯曲并增加连合应变,与圆形展开瓣膜中的小叶相比,这可能会加快小叶的结构破坏。

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