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September 28, 2025Journal of Mechanisms and Robotics5 citations

Modeling and Simulation of a Novel Parallel Robotic System for Minimally Invasive Pancreatic Surgery

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DPDoina PîslăAPAlexandru PuscaBGBogdan Gherman

Key Points

  • The robotic system improves precision in minimally invasive pancreatic surgery, enhancing operational ergonomics.
  • A numerical simulation demonstrated that the robot can follow surgical paths with high stability and repeatability.
  • Kinematic modeling and workspace analysis were conducted to design the robotic architecture specifically for surgical needs.
  • This research highlights the feasibility of integrating the robotic system into advanced surgical workflows, requiring further validation.

Abstract

Abstract This paper presents the kinematic modeling, workspace analysis, and simulation of a novel modular parallel robot with four degrees of freedom (DOF), specifically designed to support minimally invasive pancreatic surgery. The proposed robotic system is capable of manipulating a variety of surgical instruments—including endoscopes, retractors, forceps, scissors, and irrigators—thus enhancing the precision and ergonomics of complex pancreatic procedures. The study outlines the clinical requirements and translates them into a tailored robotic architecture, followed by a detailed inverse kinematics formulation and workspace evaluation, including singularity analysis. A numerical simulation of a medically relevant trajectory was conducted in MATLAB, demonstrating the robot's ability to follow precise surgical paths with high repeatability and stability. These initial results validate the feasibility of the proposed design and highlight its potential for integration into advanced surgical workflows.

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Cite This Study

Pîslă et al. (2025) studied this question.

synapsesocial.com/papers/68d913b24ddcf71ba560c165https://doi.org/10.1115/1.4069975
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