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October 10, 2016Journal of Medical Robotics Research50 citations

Autonomous Control of Continuum Robot Manipulators for Complex Cardiac Ablation Tasks

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MYMichael C. YipJSJake SgangaDCDavid B. Camarillo

Key Result

Autonomous robotic control of a continuum catheter achieved lower tracking error compared to manual control in a simulated beating heart environment, potentially improving ablation consistency.

Structured PICO

Does autonomous robotic control improve tracking error compared to manual control in a simulated beating heart model?

P
Population
Simulated beating heart environment/model
I
Intervention
Autonomous robotic control of a continuum manipulator using a model-less hybrid control approach
C
Comparator
Manual control by users
O
Outcome
Tracking error (position and force regulation)surrogate

Autonomous robotic control of continuum manipulators improves tracking precision compared to manual control in a simulated beating heart environment, potentially reducing ablation path discontinuities.

Abstract

Continuum manipulators enable minimally-invasive surgery on the beating heart, but the challenges involved in manually controlling the manipulator’s tip position and contact force with the tissue result in failed procedures and complications. The objective of this work is to achieve autonomous robotic control of a continuum manipulator’s position and force in a beating heart model. We present a model-less hybrid control approach that regulates the tip position/force of manipulators with unknown kinematics/mechanics, under unknown constraints along the manipulator’s body. The algorithms estimate the Jacobian in the presence of heartbeat disturbances and sensor noise in real time, enabling closed-loop control. Using this model-less control approach, a robotic catheter autonomously traced clinically relevant paths on a simulated beating heart environment while regulating contact force. A gating procedure is used to tighten the treatment margins and improve precision. Experimental results demonstrate the capabilities of the robot (Formula: see textFormula: see textmm–Formula: see textFormula: see textmm tracking error) while user demonstrations show the difficulty of manually performing the same task (Formula: see textFormula: see textmm–Formula: see textFormula: see textmm tracking error). This new, robotically-enabled contiguous ablation method could reduce ablation path discontinuities, improve consistency of treatment, and therefore improve clinical outcomes.

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Cite This Study

Yip et al. (2016) studied Cardiac ablation. Autonomous robotic control of a continuum manipulator vs. Manual control was evaluated on Tracking error. Autonomous robotic control of a continuum catheter achieved lower tracking error compared to manual control in a simulated beating heart environment, potentially improving ablation consistency.

synapsesocial.com/papers/6a0ea981a14f152feaf9ac90https://doi.org/10.1142/s2424905x17500027
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