Exploiting the instability of eccentric tube robots for distal force control in minimally invasive cardiac ablation

Author:

Alfalahi Hessa1ORCID,Renda Federico23,Messer Conor2ORCID,Stefanini Cesare134

Affiliation:

1. Department of Biomedical Engineering, Healthcare Engineering Innovation Center, Khalifa University of Science and Technology, UAE

2. Department of Mechanical Engineering, Healthcare Engineering Innovation Center, Khalifa University of Science and Technology, UAE

3. Khalifa University Center for Autonomous Robotics Systems (KUCARS), Khalifa University of Science and Technology, UAE

4. The Biorobotics Institute, Scoula Superiore Sant’Anna, Pisa, Italy

Abstract

While the dilemma of motion tracking and force control in beating-heart surgery is previously addressed using active control architectures and rigid robotic actuators, this work leverages the highly controllable mechanical properties of concentric tube robots for intelligent, design-based force control in minimally invasive cardiac ablation. Briefly, cardiac ablation is the conventional procedure for treating arrhythmia patients, by which exposing the diseased cardiac tissue to Radio-Frequency (RF) energy restores the normal heart rhythm. Yet, the procedure suffers low success rate due to the inability of existing flexible catheters to maintain a consistent, optimal contact force between the tip electrode and the tissue, imposing the need for future repeat surgeries upon disease recurrence. The novelty of our work lies in the development of a statically-balanced compliant mechanism composed of (1) distal bi-stable concentric tubes and (2) a compliant, torsional spring mechanism that provides torque at tubes proximal extremity, resulting in an energy-free catheter with a zero-stiffness tip. This catheter is expected to maintain surgical efficacy and safety despite the chaotic displacement of the heart, by naturally keeping the tip force at an optimal level, not less and not more than the surgical requirement. The presented experimental results of the physical prototype, reflect the feasibility of the proposed design, as well as the robustness of the formulated catheter mathematical models which were uniquely deployed in the selection of the optimal design parameters.

Publisher

SAGE Publications

Subject

Mechanical Engineering

Cited by 3 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Design and Fabrication of Concentric Tube Robots: A Survey;IEEE Transactions on Robotics;2023-08

2. Shape and Tip Force Estimation of Concentric Tube Robots Based on Actuation Readings Alone;2023 IEEE International Conference on Soft Robotics (RoboSoft);2023-04-03

3. Autonomous Tissue Manipulation via Surgical Robot Using Deep Reinforcement Learning and Evolutionary Algorithm;IEEE Transactions on Medical Robotics and Bionics;2023-02

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