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Fast Simulation of Mitral Annuloplasty for Surgical Planning

机译:快速模拟二尖瓣瓣环成形术的手术计划

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Mitral valve repair is a complex procedure that requires the ability to predict closed valve shape through the examination of an un-pressurized, flaccid valve. These procedures typically include the remodeling of the mitral annulus through the insertion of an annuloplasty ring. While simulations could facilitate the planning of the procedure, traditional finite-element models of mitral annuloplasty are too slow to be clinically feasible and have never been validated in tissue. This work presents a fast method for simulating valve closure post-annuloplasty using a mass-spring tissue model and subject-specific valve geometry. Closed valve shape is predicted in less than one second. The results are validated by implanting an annuloplasty ring in an excised porcine heart and comparing simulated to imaged results. Results indicate that not only can mitral annuloplasty be simulated quickly, but also with sub-millimeter accuracy.
机译:二尖瓣修复是一个复杂的过程,需要能够通过检查未加压,松弛的瓣膜来预测闭合瓣膜的形状。这些程序通常包括通过插入瓣环成形术环来重塑二尖瓣环。虽然模拟可以简化手术计划,但传统的二尖瓣瓣环成形术的有限元模型太慢,无法在临床上可行,并且从未在组织中得到验证。这项工作提出了一种使用质量弹簧组织模型和受检者特定的瓣膜几何形状模拟瓣膜闭合后瓣膜闭合的快速方法。预计关闭阀的形状将在不到一秒钟的时间内完成。通过在切除的猪心脏中植入瓣环成形术环并将模拟结果与成像结果进行比较,可以验证结果。结果表明,不仅可以快速模拟二尖瓣瓣环成形术,而且还可以达到亚毫米级的精度。

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