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Adaptive Path Planning for Steerable Needles Using Duty-Cycling
Acte de colloque   Open Access

Adaptive Path Planning for Steerable Needles Using Duty-Cycling

Mariana Costa Bernardes, Bruno Vilhena Adorno, Philippe Poignet, Nabil Zemiti et Geovany A. Borges
IROS: Intelligent RObots and Systems, pp.2545-2550
IROS: Intelligent RObots and Systems (San Francisco, CA, United States, 25/09/2011–30/09/2011)
20/10/2011

Résumé

This paper presents an adaptive approach for 2D motion planning of steerable needles. It combines duty-cycled rotation of the needle with the classic Rapidly-Exploring Random Tree (RRT) algorithm to obtain fast calculation of feasible trajectories. The motion planning is used intraoperatively at each cycle to compensate for system uncertainties and perturbations. Simulation results demonstrate the performance of the proposed motion planner on a workspace based on ultrasound images.

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