DocumentCode
1186130
Title
Tactile Feedback Induces Reduced Grasping Force in Robot-Assisted Surgery
Author
King, Chih-Hung ; Culjat, Martin O. ; Franco, Miguel L. ; Lewis, Catherine E. ; Dutson, Erik P. ; Grundfest, Warren S. ; Bisley, James W.
Author_Institution
Dept. of Biomed. Eng., Univ. of California, Los Angeles, CA
Volume
2
Issue
2
fYear
2009
Firstpage
103
Lastpage
110
Abstract
Robot-assisted minimally invasive surgery has gained widespread use over the past decade, but the technique is currently operated in the absence of haptic feedback during tissue manipulation. We have developed a complete tactile feedback system, consisting of a piezoresistive force sensor, control system, and pneumatic balloon tactile display, and mounted directly onto a da Vinci surgical robotic system. To evaluate the effect of tactile feedback on robotic manipulation, a group of novices (n = 16) and experts ( n = 4) were asked to perform three blocks of peg transfer tasks with the tactile feedback system in place. Force generated at the end-effectors was measured in all three blocks, but tactile feedback was active only during the middle block. All subjects used higher force when the feedback system was inactive. When active, subjects immediately used substantially less force and still maintained appropriate grip during the task. After the system was again turned off, grip force increased significantly to prefeedback levels. These results demonstrate that robotic manipulations without tactile feedback are done with more force than needed to grasp objects. Therefore, the addition of tactile feedback allows the surgeon to grasp with less force, and may improve control of the robotic system and handling of tissues and other objects.
Keywords
end effectors; force sensors; haptic interfaces; medical robotics; piezoresistive devices; control system; da Vinci surgical robotic system; end-effector; piezoresistive force sensor; pneumatic balloon tactile display; robot-assisted minimally invasive surgery; tactile feedback system; tissue manipulation; Surgical robotics; haptic human performance; haptic perception; haptic real-time control; haptic system design and analysis; tactile display; telemanipulation.;
fLanguage
English
Journal_Title
Haptics, IEEE Transactions on
Publisher
ieee
ISSN
1939-1412
Type
jour
DOI
10.1109/TOH.2009.4
Filename
4798161
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