Literature DB >> 25436176

Interactive-rate Motion Planning for Concentric Tube Robots.

Luis G Torres1, Cenk Baykal1, Ron Alterovitz1.   

Abstract

Concentric tube robots may enable new, safer minimally invasive surgical procedures by moving along curved paths to reach difficult-to-reach sites in a patient's anatomy. Operating these devices is challenging due to their complex, unintuitive kinematics and the need to avoid sensitive structures in the anatomy. In this paper, we present a motion planning method that computes collision-free motion plans for concentric tube robots at interactive rates. Our method's high speed enables a user to continuously and freely move the robot's tip while the motion planner ensures that the robot's shaft does not collide with any anatomical obstacles. Our approach uses a highly accurate mechanical model of tube interactions, which is important since small movements of the tip position may require large changes in the shape of the device's shaft. Our motion planner achieves its high speed and accuracy by combining offline precomputation of a collision-free roadmap with online position control. We demonstrate our interactive planner in a simulated neurosurgical scenario where a user guides the robot's tip through the environment while the robot automatically avoids collisions with the anatomical obstacles.

Entities:  

Year:  2014        PMID: 25436176      PMCID: PMC4243933          DOI: 10.1109/ICRA.2014.6907112

Source DB:  PubMed          Journal:  IEEE Int Conf Robot Autom        ISSN: 2154-8080


  7 in total

1.  Quasistatic Modeling of Concentric Tube Robots with External Loads.

Authors:  Jesse Lock; Genevieve Laing; Mohsen Mahvash; Pierre E Dupont
Journal:  Rep U S       Date:  2010-12-03

2.  Parsimonious evaluation of concentric-tube continuum robot equilibrium conformation.

Authors:  Daniel Caleb Rucker; Robert J Webster Iii
Journal:  IEEE Trans Biomed Eng       Date:  2009-06-16       Impact factor: 4.538

3.  A Geometrically Exact Model for Externally Loaded Concentric-Tube Continuum Robots.

Authors:  D Caleb Rucker; Bryan A Jones; Robert J Webster
Journal:  IEEE Trans Robot       Date:  2010       Impact factor: 5.567

4.  Design and Control of Concentric-Tube Robots.

Authors:  Pierre E Dupont; Jesse Lock; Brandon Itkowitz; Evan Butler
Journal:  IEEE Trans Robot       Date:  2010-04-01       Impact factor: 5.567

5.  Torsional Kinematic Model for Concentric Tube Robots.

Authors:  Pierre E Dupont; Jesse Lock; Evan Butler
Journal:  IEEE Int Conf Robot Autom       Date:  2009-05-12

6.  Metal MEMS Tools for Beating-heart Tissue Removal.

Authors:  Andrew H Gosline; Nikolay V Vasilyev; Arun Veeramani; Mingting Wu; Greg Schmitz; Rich Chen; Veaceslav Arabagi; Pedro J Del Nido; Pierre E Dupont
Journal:  IEEE Int Conf Robot Autom       Date:  2012

7.  Motion Planning for Concentric Tube Robots Using Mechanics-based Models.

Authors:  Luis G Torres; Ron Alterovitz
Journal:  Rep U S       Date:  2011
  7 in total
  4 in total

1.  Learning the Complete Shape of Concentric Tube Robots.

Authors:  Alan Kuntz; Armaan Sethi; Robert J Webster; Ron Alterovitz
Journal:  IEEE Trans Med Robot Bionics       Date:  2020-02-19

2.  Continuum Robots for Medical Interventions.

Authors:  Pierre E Dupont; Nabil Simaan; Howie Choset; Caleb Rucker
Journal:  Proc IEEE Inst Electr Electron Eng       Date:  2022-02-08       Impact factor: 14.910

3.  Optimizing Design Parameters for Sets of Concentric Tube Robots using Sampling-based Motion Planning.

Authors:  Cenk Baykal; Luis G Torres; Ron Alterovitz
Journal:  Rep U S       Date:  2015-09-28

4.  A Motion Planning Approach to Automatic Obstacle Avoidance during Concentric Tube Robot Teleoperation.

Authors:  Luis G Torres; Alan Kuntz; Hunter B Gilbert; Philip J Swaney; Richard J Hendrick; Robert J Webster; Ron Alterovitz
Journal:  IEEE Int Conf Robot Autom       Date:  2015-05
  4 in total

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