Structural Synthesis of 2r1t Type Mechanisms for Minimally Invasive Surgery Applications
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Green Open Access
Yes
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Abstract
Assistive and operative manipulators allow easier and more precise operations for minimally invasive surgery. Such manipulators often have a pivot point at the incision port on the pa-tient’s body, so the manipulator should have a remote center of motion. This study presents the structural synthesis of a non-parasitic 3-dof manipulator with 2R1T motion pattern to be used as a remote center of motion mechanism for minimally invasive surgery applications. The manipulators of various kinematic structure are evaluated considering criteria such as possibility of construction of the mechanism for remote center of motion, ease of dynamic balancing, number of links, structural symmetry, the number of actuators connected to the base and decoupling of the joint inputs and the output motion of the platform.
Description
4th Conference on Mechanisms, Transmissions and Applications, MeTrApp 2017; Trabzon; Turkey; 3 July 2017 through 5 July 2017
Fields of Science
0209 industrial biotechnology, 0203 mechanical engineering, 02 engineering and technology
Citation
Yaşır, A, and Kiper, G. (2018). Structural synthesis of 2R1T type mechanisms for minimally invasive surgery applications. In M. İ. C. Dede, M. İtik, E. C. Lovasz, G. Kiper (Eds.), Mechanisms, Transmissions and Applications: Proceedings of the Fourth MeTrApp Conference 2017, (pp. 31-38). Cham, Switzerland: Springer
WoS Q
N/A
Scopus Q
Q4

OpenCitations Citation Count
5
Source
Mechanisms, Transmissions and Applications: Proceedings of the Fourth MeTrApp Conference 2017
Volume
52
Issue
Start Page
31
End Page
38
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CrossRef : 2
Scopus : 11
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Mendeley Readers : 7
SCOPUS™ Citations
11
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698
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Downloads
473
checked on Jun 13, 2026
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