• DocumentCode
    3404586
  • Title

    Design of the virtual reality based robotic catheter system for minimally invasive surgery training

  • Author

    Gao, Baofeng ; Guo, Shuxiang ; Xiao, Nan ; Guo, Jin

  • Author_Institution
    Fac. of Eng., Kagawa Univ., Takamatsu, Japan
  • fYear
    2012
  • fDate
    15-17 Aug. 2012
  • Firstpage
    611
  • Lastpage
    616
  • Abstract
    Minimally Invasive Surgery (MIS) is a specialized surgical technique that permits vascular interventions through very small incisions. This minimizes the patients´ trauma and permits a faster recovery compared to traditional surgery. However, the significant disadvantage of this surgery technique is its complexity; therefore, it requires extensive training before surgery. In this paper, for the VR system, we use the master side as the controller, and we use the open source code DCMTK to read the information of “.DCM” file and carry out the CT image segmentation for the Virtual Reality based Robotic Catheter System and we use Open Scene Graph (OSG) to realize the 3D image output and catheter control of the Virtual Reality System. We present virtual reality simulators for training with force feedback in minimally invasive surgery. This application allows generating realistic physical-based model of catheter and blood vessels, and enables surgeons to touch, feel and manipulate virtual catheter inside vascular model through the same surgical operation mode used in actual MIS. The experimental results show that the error rate is in an acceptable range and the simulators can be used for surgery training.
  • Keywords
    blood vessels; catheters; computer based training; computerised tomography; image segmentation; medical image processing; medical robotics; surgery; virtual reality; 3D image output; CT image segmentation; DCMTK; MIS; OSG; blood vessel; catheter control; force feedback; minimally invasive surgery training; open scene graph; patient trauma; robotic catheter system; surgical operation mode; vascular intervention; virtual catheter; virtual reality; Biomedical imaging; Blood vessels; Catheters; Force; Solid modeling; Surgery; Virtual reality; minimally invasive surgery; physical-based models; virtual reality simulators;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Automation and Logistics (ICAL), 2012 IEEE International Conference on
  • Conference_Location
    Zhengzhou
  • ISSN
    2161-8151
  • Print_ISBN
    978-1-4673-0362-0
  • Electronic_ISBN
    2161-8151
  • Type

    conf

  • DOI
    10.1109/ICAL.2012.6308151
  • Filename
    6308151