Magnetic Guidewire Control without Tip-Angle Detection in Sharply Curved Blood Vessel

Jayoung Kim, Byungjeon Kang, Phu Bao Nguyen, Eunpyo Choi, Chang-sei Kim, Jong-Oh Park
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引用次数: 1

Abstract

Ahstract- This paper proposes a position control algorithm for a magnetic guidewire without detection of tip-angle in sharply curved blood vessels. Key element of the proposed tip positioning control is to track a desired path regenerated in a blood vessel by a feeding control and an electromagnetic actuation (EMA) control. The path-regeneration creates an improved path in terms of properties of a magnetic guidewire and the size of a blood vessel when a magnetic guidewire can not traverse an original path. Based on a desired path, the feeding device and the EMA system make the translational and the rotational motion of a magnet tip, respectively. In this paper, for the EMA system, one pair of Helmholtz coil is employed to steer the magnet tip by adjusting the direction of the magnetic field. For the positioning control, a magnet tip is controlled with a regenerated path in order to follow a desired path without information of tip orientation. The proposed control methodology was verified through experiments on a phantom of sharply curved blood vessels. The experimental results proved that the proposed method could overcome the sharply curved blood vessel by control of the tip position of the guidewire with high accuracy in real-time.
大弯曲血管中不检测尖角的磁导丝控制
摘要提出了一种不检测尖角的大弯曲血管磁导丝位置控制算法。所提出的尖端定位控制的关键要素是跟踪通过馈电控制和电磁驱动(EMA)控制在血管中再生的期望路径。当磁导丝不能穿过原始路径时,路径再生根据磁导丝的特性和血管的大小创建了改进的路径。根据期望的路径,进料装置和EMA系统分别进行磁头的平移和旋转运动。本文采用一对亥姆霍兹线圈,通过调节磁场方向来控制磁头的方向。在定位控制中,利用再生路径控制磁头,使磁头沿期望路径运动,而不需要磁头方向信息。通过对一个急剧弯曲的血管模型的实验验证了所提出的控制方法。实验结果表明,该方法能够实时高精度地控制导丝尖端位置,克服血管急剧弯曲的问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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