Surgical reconstruction of semilunar valves in the growing child: Should we mimic the venous valve? A simulation study.
Surgical reconstruction of semilunar valves in the growing child: Should we mimic the venous valve? A simulation study.
复制标题
在成长中的儿童中半路瓣的手术重建:我们应该模仿静脉瓣吗?模拟研究。
DOI:
10.1016/j.jtcvs.2016.08.019
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发表时间:
2017-02
期刊:
影响因子:
--
通讯作者:
Del Nido PJ
中科院分区:
文献类型:
--
作者:
Hammer PE;Roberts EG;Emani SM;Del Nido PJ
Neither heart valve repair methods nor current prostheses can accommodate patient growth. Normal aortic and pulmonary valves have three leaflets, and the goal of valve repair and replacement is typically to restore normal three-leaflet morphology. However, mammalian venous valves have bileaflet morphology and open and close effectively over a wide range of vessel sizes. We propose that they might serve as a model for pediatric heart valve reconstruction and replacement valve design. We explore this concept using computer simulation. We use a finite element method to simulate the ability of a reconstructed cardiac semilunar valve to close competently in a growing vessel, comparing a three-leaflet design with a two-leaflet design that mimics a venous valve. Three venous valve designs were simulated to begin to explore the parameter space. Simulations show that for an initial vessel diameter of 12 mm, the venous valve design remains competent as the vessel grows to 20 mm (67 %), while the normal semilunar design remains competent only to 13 mm (8 %). Simulations also suggested that systolic function, estimated as effective orifice area, was not detrimentally affected by the venous valve design, with all three venous valve designs exhibiting greater effective orifice area than the semilunar valve design at a given level of vessel growth. Morphologic features of the venous valve design make it well-suited for competent closure over a wide range of vessel sizes, suggesting its use as a model for semilunar valve reconstruction in the growing child.