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首页> 外文期刊>The Annals of Thoracic Surgery: Official Journal of the Society of Thoracic Surgeons and the Southern Thoracic Surgical Association >Functional and Biomechanical Performance of Stentless Extracellular Matrix Tricuspid Tube Graft: An Acute Experimental Porcine Evaluation
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Functional and Biomechanical Performance of Stentless Extracellular Matrix Tricuspid Tube Graft: An Acute Experimental Porcine Evaluation

机译:无支架细胞外基质三尖瓣管移植的功能和生物力学性能:急性实验猪评估。

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Stentless porcine extracellular matrix tricuspid tubular valves have been developed for tricuspid valve reconstruction. The purpose of this study was to compare biomechanical and functional performance of native and tube graft valves in an acute porcine model.MethodsTwenty-two 65-kg pigs were randomized to tube graft or control with native valve preservation. Anterior papillary muscle force was measured with a dedicated force transducer. Microtip pressure catheters were placed in the right atrium and ventricle. Leaflet motion and three-dimensional valve geometry were evaluated using 13 sonomicrometry crystals: six in the tricuspid annulus, one on each leaflet free edge, one on each papillary muscle tip, and one in the right ventricular apex.ResultsNo regurgitation and no significant differences in intracavitary pressures, annular motion, or leaflet excursion angles were observed after tube graft implantation (p > 0.05). Compared with the native valve, the tricuspid annulus, leaflet orifice area, annular diameters, and the septal segment of the annulus were significantly smaller in the tube graft group (p < 0.05). Maximum anterior papillary muscle force was significantly lower in the tube graft group (p < 0.005). The implantation technique led to an annular circumferential downsizing of 20% ± 17%.ConclusionsAn extracellular matrix tube graft implanted in the tricuspid position produces a competent valve with physiologic performance that, despite downsizing, makes the tube graft an attractive alternative to valve replacement. The downsizing of the implantation should be considered when planning tube graft size and may be potentially beneficial by relieving tension on the repaired tissue, thereby increasing durability.
机译:已开发出无支架猪细胞外基质三尖瓣管状瓣膜用于三尖瓣重建。这项研究的目的是比较急性猪模型中天然瓣膜和管状移植瓣膜的生物力学和功能性能。方法将22只65公斤猪随机分配到天然瓣膜保存管或对照组。用专用力传感器测量前乳头肌力。将微尖压力导管放置在右心房和心室中。使用13种体测法晶体对小叶运动和三维瓣膜几何结构进行了评估:三尖瓣环中六个,每个小叶自由边缘一个,每个乳头肌尖端一个,右心尖一个,结果移植管后观察到腔内压力,环形运动或小叶偏移角(p> 0.05)。与天然瓣膜相比,在移植管组中,三尖瓣环,小叶孔面积,环形直径和间隔间隔明显较小(p <0.05)。管移植组最大前乳头肌力明显降低(p <0.005)。植入技术导致环形周向缩小20%±17%。结论在三尖瓣位置植入的细胞外基质管移植物产生了具有生理功能的有效瓣膜,尽管减小了尺寸,但仍使该管移植物成为有吸引力的替代方法阀门更换。在计划移植管尺寸时应考虑减小植入物的尺寸,并且通过减轻修复组织上的张力从而增加耐用性可能会带来潜在的好处。

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