Multi-Modal Haptic Feedback for Grip Force Reduction in Robotic Surgery.

Journal: Scientific reports
Published Date:

Abstract

Minimally invasive robotic surgery allows for many advantages over traditional surgical procedures, but the loss of force feedback combined with a potential for strong grasping forces can result in excessive tissue damage. Single modality haptic feedback systems have been designed and tested in an attempt to diminish grasping forces, but the results still fall short of natural performance. A multi-modal pneumatic feedback system was designed to allow for tactile, kinesthetic, and vibrotactile feedback, with the aims of more closely imitating natural touch and further improving the effectiveness of HFS in robotic surgical applications and tasks such as tissue grasping and manipulation. Testing of the multi-modal system yielded very promising results with an average force reduction of nearly 50% between the no feedback and hybrid (tactile and kinesthetic) trials (p < 1.0E-16). The multi-modal system demonstrated an increased reduction over single modality feedback solutions and indicated that the system can help users achieve average grip forces closer to those normally possible with the human hand.

Authors

  • Ahmad Abiri
    UCLA Center for Advanced Surgical and Interventional Technology (CASIT), Los Angeles, USA. aabiri@ucla.edu.
  • Jake Pensa
    UCLA Center for Advanced Surgical and Interventional Technology (CASIT), Los Angeles, USA.
  • Anna Tao
    UCLA Center for Advanced Surgical and Interventional Technology (CASIT), Los Angeles, USA.
  • Ji Ma
    UCLA Henry Samueli School of Engineering and Applied Science, Los Angeles, USA.
  • Yen-Yi Juo
    UCLA Department of Surgery, Los Angeles, USA.
  • Syed J Askari
    UCLA Center for Advanced Surgical and Interventional Technology (CASIT), Los Angeles, USA.
  • James Bisley
    UCLA Department of Neurobiology, Los Angeles, USA.
  • Jacob Rosen
    Associate Professor, Department of Computer Engineering, University of California, Santa Cruz, Calif.
  • Erik P Dutson
    UCLA Center for Advanced Surgical and Interventional Technology (CASIT), Los Angeles, USA.
  • Warren S Grundfest
    UCLA Center for Advanced Surgical and Interventional Technology (CASIT), Los Angeles, USA.