DocumentCode
96
Title
Achieving Haptic Perception in Forceps’ Manipulator Using Pneumatic Artificial Muscle
Author
Li, Hongbing ; Kawashima, Kenji ; Tadano, Kotaro ; Ganguly, Shameek ; Nakano, Sumire
Author_Institution
Dept. of Mechano-Micro Eng., Tokyo Inst. of Technol., Yokohama, Japan
Volume
18
Issue
1
fYear
2013
fDate
Feb. 2013
Firstpage
74
Lastpage
85
Abstract
Many minimally invasive surgical procedures are now performed using teleoperated robotic systems. However, such commercially available systems do not provide significant force feedback to the surgeon. This reduces surgeon´s dexterity and increases tissue trauma when performing the operation. In this paper, a compact and lightweight forceps´ manipulator using pneumatic artificial muscles (PAMs) for minimally invasive surgery is presented, which allows for the perception of manipulation force without the usage of the force sensor. The main advantage of this concept is that no force sensor has to be integrated into surgical instruments and inserted into the patient´s body. Rather, a disturbance observer is integrated into the slave-side controller for the estimation of the external force acting at the forcep´s tip. This approach reduces costs and stabilizability demands for forceps´ manipulator while enables haptic feedback to the surgeons. Results of force perception experiments and comparison with forceps´ manipulator driven by pneumatic cylinders are presented to validate the concepts.
Keywords
biological tissues; cost reduction; force feedback; manipulators; medical robotics; observers; surgery; telerobotics; cost reduction; disturbance observer; external force estimation; force feedback; forceps manipulator; haptic feedback; haptic perception; manipulation force perception; minimally invasive surgical procedure; pneumatic artificial muscle; pneumatic cylinder; slave-side controller; stabilizability demand reduction; surgical instrument; teleoperated robotic system; tissue trauma; Force; Force sensors; Joints; Manipulators; Muscles; Surgery; Tendons; Haptic perception; disturbance observer; forceps’ manipulator; pneumatic artificial muscle;
fLanguage
English
Journal_Title
Mechatronics, IEEE/ASME Transactions on
Publisher
ieee
ISSN
1083-4435
Type
jour
DOI
10.1109/TMECH.2011.2163415
Filename
5997310
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