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January 20, 200334 citations

A dexterous manipulator for minimally invasive surgery

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MMMark A. MinorRMRanjan Mukherjee

Key Points

  • The aim is to design a manipulator that enables careful placement of surgical tools during minimally invasive surgery.
  • Developed a multilink structure with gears for actuation and articulation of end-effectors.
  • Optimized linking configurations and materials for improved performance.
  • Evaluated aspects like load capacity, durability, and workspace to enhance ergonomic use.
  • Manipulator provides significant degrees of freedom for end-effectors with bidirectional 180-degree articulation.
  • Achieved a large and dexterous workspace, with enhanced stiffness and low backlash characteristics.
  • Demonstrated high durability and load capacity in preliminary assessments.

Abstract

Presented here is the design of a mechanism for dexterous placement of an end-effector (forceps, scissors, dissectors) during minimally invasive surgery. The mechanism is best suited to function as a manipulator for a surgical robotics system where motion scaling and filtering of surgeon hand movements could be realized in a fashion to improve ergonomics. End-effector degrees of freedom in the form of actuation, bidirectional 180/spl deg/ articulation, and rotation are provided by a compact multilink structure comprised of gears and gear-links. This structure has been optimized to provide a large dexterous workspace, low backlash, small force magnification, excellent stiffness, load capacity and infinite life durability. These conditions are achieved through selection of link configuration, forceps design, optimal link thicknesses, gear profile design, and high strength steels.

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Cite This Study

Minor et al. (2003) studied this question.

synapsesocial.com/papers/6a21c46d72831717cbeca85fhttps://doi.org/10.1109/robot.1999.770410
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