Magnetic Ball Chain Robots for Cardiac Arrhythmia Treatment

Fuente: arXiv
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Bibliographic Details
Main Authors: Pittiglio, Giovanni, Leuenberger, Fabio, Mencattelli, Margherita, McCandless, Max, O'Leary, Edward, Dupont, Pierre E.
Format: Preprint
Published: 2024
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author Pittiglio, Giovanni
Leuenberger, Fabio
Mencattelli, Margherita
McCandless, Max
O'Leary, Edward
Dupont, Pierre E.
author_facet Pittiglio, Giovanni
Leuenberger, Fabio
Mencattelli, Margherita
McCandless, Max
O'Leary, Edward
Dupont, Pierre E.
contents This paper introduces a novel magnetic navigation system for cardiac ablation. The system is formed from two key elements: a magnetic ablation catheter consisting of a chain of spherical permanent magnets; and an actuation system comprised of two cart-mounted permanent magnets undergoing pure rotation. The catheter design enables a large magnetic content with the goal of minimizing the footprint of the actuation system for easier integration with the clinical workflow. We present a quasi-static model of the catheter, the design of the actuation units, and their control modalities. Experimental validation shows that we can use small rotating magnets (119mm diameter) to reach cardiac ablation targets while generating clinically-relevant forces. Catheter control using a joystick is compared with manual catheter control. blue While total task completion time is similar, smoother navigation is observed using the proposed robotic system. We also demonstrate that the ball chain can ablate heart tissue and generate lesions comparable to the current clinical ablation catheters.
format Preprint
id arxiv_https___arxiv_org_abs_2410_16405
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Magnetic Ball Chain Robots for Cardiac Arrhythmia Treatment
Pittiglio, Giovanni
Leuenberger, Fabio
Mencattelli, Margherita
McCandless, Max
O'Leary, Edward
Dupont, Pierre E.
Robotics
Systems and Control
This paper introduces a novel magnetic navigation system for cardiac ablation. The system is formed from two key elements: a magnetic ablation catheter consisting of a chain of spherical permanent magnets; and an actuation system comprised of two cart-mounted permanent magnets undergoing pure rotation. The catheter design enables a large magnetic content with the goal of minimizing the footprint of the actuation system for easier integration with the clinical workflow. We present a quasi-static model of the catheter, the design of the actuation units, and their control modalities. Experimental validation shows that we can use small rotating magnets (119mm diameter) to reach cardiac ablation targets while generating clinically-relevant forces. Catheter control using a joystick is compared with manual catheter control. blue While total task completion time is similar, smoother navigation is observed using the proposed robotic system. We also demonstrate that the ball chain can ablate heart tissue and generate lesions comparable to the current clinical ablation catheters.
title Magnetic Ball Chain Robots for Cardiac Arrhythmia Treatment
topic Robotics
Systems and Control
url https://arxiv.org/abs/2410.16405