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VR Surgical Simulator Development for Medical Training
  1. case
  2. VR Surgical Simulator Development for Medical Training

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VR Surgical Simulator Development for Medical Training

uplinesoft.com
Education

Challenge

Traditional surgical training methods often lack realism and fail to adequately prepare students for the complexities of real-world surgical procedures. Limited access to surgical practice opportunities hinders skill refinement and deeper understanding of surgical techniques.

About the Client

Unitas is a leading provider of medical training solutions, focused on enhancing practical skills development for future medical professionals.

Objectives

  • Develop a highly realistic VR surgical simulator to enhance medical student training.
  • Improve student proficiency in surgical procedures through hands-on virtual practice.
  • Provide a safe and accessible environment for students to practice complex surgical skills.
  • Reduce the reliance on cadavers and live animal models in initial surgical skill development.

Functionality

  • Hand tracking-based surgical instrument control.
  • Realistic virtual patient models with varying anatomical complexities.
  • A library of diverse surgical scenarios and procedures.
  • Performance metrics and feedback on surgical technique.
  • User-friendly interface for scenario selection and customization.
  • Progress tracking and reporting for students and instructors.

Technology Stack

Unity
OpenXR
Hand Tracking Technology (e.g., Leap Motion, Oculus Hand Tracking)
C#
Git

Non-Functional Requirements

  • High level of realism and immersion.
  • Responsive and smooth performance.
  • Scalability to accommodate a growing library of surgical scenarios.
  • Data security and privacy for student progress information.
  • Cross-platform compatibility (VR headsets).

Expected Business Impact

This VR surgical simulator is expected to significantly improve the quality and efficiency of medical training. By providing a realistic and accessible practice environment, it will lead to better-prepared medical professionals, reduced training costs, and enhanced student learning outcomes. The simulator will also allow for continuous skill development and refinement, ultimately improving patient care.

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