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Related Concept Videos

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The knee joint is the most complicated joint in the body. It consists of three articulations– two tibiofemoral and one patellofemoral. As is characteristic of synovial joints, the knee joint has a thin articular capsule that partially surrounds this joint cavity. Additionally, several ligaments, muscles, and cartilaginous structures support the movement of the knee.
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Development and Implementation of a Three-dimensional Printed Knee Joint Simulation Model Using the Consolidated

Eugene Krustev1, Adam Dubrowski2

  • 1Medical Education and Simulation, Memorial University of Newfoundland, St. John's, CAN.

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|June 14, 2019
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Summary

This study developed an affordable knee joint injection simulator using 3D printing. Experts found local manufacturing and planning crucial for successful curriculum integration, highlighting cost-effectiveness in medical simulation training.

Keywords:
3d printingsimulation

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Area of Science:

  • Medical Education
  • Biomedical Engineering
  • Simulation Technology

Background:

  • Knee joint injections and aspirations are critical skills for medical professionals.
  • Simulation-based training enhances confidence and performance in these procedures.
  • Existing knee joint simulators are prohibitively expensive.

Purpose of the Study:

  • To design and manufacture a low-cost knee joint simulator using 3D printing and gel layering.
  • To assess the opinions of simulation specialists and administrators on the simulator's curricular implementation.

Main Methods:

  • Developed a 31-item implementation survey based on the Consolidated Framework for Implementation Research (CFIR).
  • Administered the survey to local simulation specialists and administrators.
  • Collected qualitative feedback on the simulator's design and implementation factors.

Main Results:

  • 16 survey items were rated as very important, including local manufacturing, planning, internal development, evidence-based design, and cost.
  • 9 items were deemed important, focusing on adaptability and testability.
  • Participants provided concerns and suggestions regarding the simulator's design.

Conclusions:

  • Local development and manufacturing are key for simulator success.
  • Thorough pre-implementation planning and efficacy evidence are vital.
  • These factors are predicted to facilitate the simulator's integration into local curricula.