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Optimal design of high dexterity modular MIS instrument for coronary artery bypass grafting

机译:高灵巧型模块化MIS冠状动脉搭桥术的优化设计

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摘要

This paper introduces an original, dextrous, active and modular minimally invasive instrument dedicated to coronary artery bypass grafting surgery. Its design is obtained by a generic evolutionary optimization process using Pareto-based multi objective genetic algorithms and including highly realist simulations and experimental models of the surgical gesture. The optimal instrument has 5 intra-body DOFs, is actuated by brush-less micro motors and is position controlled. Its optimization, mechanical design and performances are discussed.
机译:本文介绍了一种专门用于冠状动脉搭桥术的灵巧,主动,模块化的微创器械。它的设计是通过使用基于帕累托(Pareto)的多目标遗传算法的通用进化优化过程来获得的,该过程包括高度逼真的仿真和手术手势的实验模型。最佳仪器具有5个体内DOF,由无刷微型电机驱动并受位置控制。讨论了其优化,机械设计和性能。

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