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February 2, 20260 citationsOpen Access

Development and Experimental Evaluation of the Athena Parallel Robot for Minimally Invasive Pancreatic Surgery

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APAlexandru PuscaRCRazvan CiocanBGBogdan Gherman

Key Points

  • The study aims to develop and evaluate a new parallel robot system for enhancing minimally invasive pancreatic surgery.
  • Development of the Athena parallel robot based on kinematic principles.
  • Implementation of command and control systems, including hardware and software.
  • Application of finite element analyses on a 3D model for performance assessments.
  • Mapping of the robot's workspace using an optical system.
  • Identified clearance in the robot's operation and implemented mechanical improvements.
  • Achieved a reduction in clearance by up to 4.1 times after component replacement.
  • Extended the robot's workspace to cover the entire pancreatic region.

Abstract

This paper presents the development and experimental evaluation of the Athena parallel robot, a novel system designed for robot-assisted pancreatic surgery. The development of the experimental model based on the kinematic scheme, including the command and control system (hardware and software), the calibration procedure, and the performance measurements of the experimental model based on finite element analyses of the 3D model, are also detailed in this paper. Based on these finite element analyses, a region of the robot that introduces clearance during the operation of the experimental model is found. The paper also presents the methodology used for mapping the robot’s workspace with an optical system, which enabled improvements to ensure coverage of the entire pancreas area. The results obtained before and after the mechanical improvements are presented, demonstrating a reduction in clearance by up to 4.1 times following part replacement, as well as a workspace extension that enables the active instrument to reach the entire pancreatic region.

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Cite This Study

Pusca et al. (2026) studied this question.

synapsesocial.com/papers/6980ffc6c1c9540dea81289ehttps://doi.org/10.3390/robotics15020033
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