基于贝叶斯优化的机器人左心耳闭塞术前规划。

Ran Hao, Yuttana Itsarachaiyot, M Cenk Çavuşoğlu
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引用次数: 0

摘要

左心耳闭塞术是一种通过血管内输送导管植入闭塞装置阻断左心耳口来降低房颤患者血栓栓塞风险的手术。术前规划左心耳封堵手术的目的是通过对左心耳结构的了解,为成功的封堵植入物输送确定最佳的植入轨迹。本文提出了一种基于贝叶斯优化的机器人左心房附件闭塞术前规划方法。手术前计划器有效地在卵圆窝上方取样经间隔穿刺位置,并依次优化经间隔穿刺位置。贝叶斯优化规划器采用迭代线性二次调节器对给定穿刺位置的闭塞轨迹进行局部优化。在真实心脏解剖模型的仿真环境中,对基于贝叶斯优化的预程序规划器的性能进行了评估。
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Bayesian Optimization Based Preprocedural Planning For Robotic Left Atrial Appendage Occlusion.

Left atrial appendage occlusion is a procedure to reduce the risk of thromboembolism in atrial fibrillation patients by blocking the left atrial appendage ostium using an occlusion device implanted by an intra-vascular delivery catheter. The preprocedural planning of the left atrial appendage occlusion procedure aims to identify an optimal implantation trajectory for a successful occlusion implant delivery from a structural understanding of the left atrial appendage. In this paper, a Bayesian Optimization based preprocedural planning approach is proposed for the robotic left atrial appendage occlusion procedure. The preprocedural planner efficiently samples transseptal puncture positions over the fossa ovalis and sequentially optimizes the transseptal puncture location. The iterative linear-quadratic-regulator is employed by the Bayesian Optimization planner for locally optimizing the occlusion trajectory for a given transseptal puncture location. The performance of the proposed Bayesian Optimization based preprocedural planner is evaluated in a simulation environment using a real cardiac anatomy model.

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