• DocumentCode
    1792110
  • Title

    Kinematics analysis of the catheter for a novel VR robotic catheter system

  • Author

    Jian Guo ; Yue Gao ; Shuxiang Guo ; Wenxuan Zhang ; Yunliang Wang

  • Author_Institution
    Tianjin Key Lab. for Control Theor. & Applic. in Complicated Syst. & Biomed. Robot Lab., Tianjin Univ. of Technol., Tianjin, China
  • fYear
    2014
  • fDate
    3-6 Aug. 2014
  • Firstpage
    1034
  • Lastpage
    1039
  • Abstract
    Compared to traditional surgery, MIS (minimally invasive surgery) as a specialized surgical technique has attracted more attention for its small incisions can minimize the trauma of patients and shorten the recovery time. Because of the complexity of the interventional surgery, the surgeon must be trained a lot to improve operation skills. In this paper, we will introduce a virtual reality robotic catheter system which can be used to train the interns to complete the operation. The virtual environment, including catheter model and vascular model, is established using 3 DS MAX 2012 software. PHANTOM premium 1.5 as the master side has been applied to control the movement of the catheter model in the virtual environment. During the real process of MIS, the catheter can realize radial movement and axial rotation. The position information obtained from the handle of the haptic device is chosen as the control variable to control the movement of the catheter in the virtual environment on two degrees of freedom. And we analyze the kinematics of the two degrees of freedom of the catheter. A proportional relationship between the control variable and the movement of the catheter is established. The experimental results prove that the traceability of the virtual reality system is high. That ensures the reliability and accuracy of the virtual interventional surgery.
  • Keywords
    biomedical education; catheters; computer based training; educational robots; haptic interfaces; medical computing; medical robotics; motion control; position control; robot kinematics; surgery; telerobotics; virtual reality; 3 DS MAX 2012 software; MIS; PHANTOM premium 1.5; VR robotic catheter system; axial rotation; catheter model; catheter movement control; control variable; haptic device; intern training; interventional surgery complexity; kinematics analysis; minimally invasive surgery; operation skills; patient recovery time; patient trauma minimization; position information; radial movement; small incisions; specialized surgical technique; vascular model; virtual environment; virtual interventional surgery; virtual reality robotic catheter system; virtual reality system; Catheters; Haptic interfaces; Robots; Solid modeling; Surgery; Virtual environments; Kinematics; MIS (minimally invasive surgery); Robotic catheter system; Virtual reality;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Mechatronics and Automation (ICMA), 2014 IEEE International Conference on
  • Conference_Location
    Tianjin
  • Print_ISBN
    978-1-4799-3978-7
  • Type

    conf

  • DOI
    10.1109/ICMA.2014.6885840
  • Filename
    6885840