• DocumentCode
    250817
  • Title

    A novel tumor localization method using haptic palpation based on soft tissue probing data

  • Author

    Min Li ; Faragasso, A. ; Konstantinova, Jelizaveta ; Aminzadeh, Vahid ; Seneviratne, Lakmal D. ; Dasgupta, Parthasarathi ; Althoefer, Kaspar

  • Author_Institution
    Dept. of Inf., Kings Coll. London, London, UK
  • fYear
    2014
  • fDate
    May 31 2014-June 7 2014
  • Firstpage
    4188
  • Lastpage
    4193
  • Abstract
    Current surgical tele-manipulators do not provide explicit haptic feedback during soft tissue palpation. Haptic information could improve the clinical outcomes significantly and help to detect hard inclusions within soft-tissue organs indicating potential abnormalities. However, system instability is often caught by direct force feedback. In this paper, a new approach to intra-operative tumor localization is introduced. A virtual-environment tissue model is created based on the reconstructed surface of a soft-tissue organ using a Kinect depth sensor and the organ´s stiffness distribution acquired during rolling indentation measurements. Palpation applied to this tissue model is haptically fed back to the user. In contrast to previous work, our method avoids the control issues inherent to systems that provide direct force feedback. We demonstrate the feasibility of this method by evaluating the performance of our tumor localization method on a soft tissue phantom containing buried stiff nodules. Results show that participants can identify the embedded tumors; the proposed method performed nearly as well as manual palpation.
  • Keywords
    force feedback; medical robotics; sensors; telerobotics; tumours; Kinect depth sensor; buried stiff nodule; direct force feedback; haptic feedback; haptic palpation; intraoperative tumor localization; rolling indentation measurement; soft tissue palpation; soft tissue probing data; soft-tissue organ; stiffness distribution; surgical telemanipulator; system instability; virtual-environment tissue model; Biological tissues; Force; Force feedback; Robots; Surface reconstruction; Three-dimensional displays;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Robotics and Automation (ICRA), 2014 IEEE International Conference on
  • Conference_Location
    Hong Kong
  • Type

    conf

  • DOI
    10.1109/ICRA.2014.6907468
  • Filename
    6907468