Soft and Stiffness-controllable Robotics Solutions for Minimally Invasive Surgery

Soft and Stiffness-controllable Robotics Solutions for Minimally Invasive Surgery
Author :
Publisher : CRC Press
Total Pages : 418
Release :
ISBN-10 : 9781000799330
ISBN-13 : 1000799336
Rating : 4/5 (336 Downloads)

Book Synopsis Soft and Stiffness-controllable Robotics Solutions for Minimally Invasive Surgery by : Jelizaveta Konstantinova

Download or read book Soft and Stiffness-controllable Robotics Solutions for Minimally Invasive Surgery written by Jelizaveta Konstantinova and published by CRC Press. This book was released on 2022-09-01 with total page 418 pages. Available in PDF, EPUB and Kindle. Book excerpt: Soft and Stiffness-controllable Robotics Solutions for Minimally Invasive Surgery presents the results of a research project, funded by European Commission, STIFF-FLOP: STIFFness controllable Flexible and Learn-able manipulator for surgical Operations. In Minimally Invasive Surgery (MIS), tools go through narrow openings and manipulate soft organs that can move, deform, or change stiffness. There are limitations on modern laparoscopic and robot-assisted surgical systems due to restricted access through Trocar ports, lack of haptic feedback, and difficulties with rigid robot tools operating inside a confined space filled with organs. Also, many control algorithms suffer from stability problems in the presence of unexpected conditions. Yet biological "manipulators", like the octopus arm can manipulate objects while controlling the stiffness of selected body parts and being inherently compliant when interacting with objects. STIFF-FLOP robot is an innovative soft robotic arm that can squeeze through a standard MIS, reconfigure itself and stiffen by hydrostatic actuation to perform compliant force control tasks while facing unexpected situations. Technical topics discussed in the book include:Soft actuatorsContinuum soft manipulatorsControl, kinematics and navigation of continuum manipulatorsOptical sensors for force, torque, and curvatureHaptic feedback and human interface for surgical systemsValidation of soft stiffness controllable robots


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