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Virtual reality simulation for the optimization of endovascular procedures: current perspectives.

Nung Rudarakanchana1, Isabelle Van Herzeele2, Liesbeth Desender2

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Virtual reality (VR) simulation is advancing endovascular procedure training, offering realistic team-based crisis management and patient-specific anatomical simulations. This technology aims to improve skills and patient outcomes by providing safe, deliberate practice environments.

Keywords:
aneurysmendovascularsimulationvirtual reality

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Area of Science:

  • Medical Simulation
  • Endovascular Interventions
  • Surgical Technology

Background:

  • Endovascular technologies are rapidly evolving, necessitating multidisciplinary collaboration.
  • High error rates in endovascular procedures highlight training challenges.
  • Traditional training methods struggle to keep pace with technological advancements.

Purpose of the Study:

  • To review the evolution and current state of endovascular virtual reality (VR) simulation.
  • To highlight the role of VR in training and assessing technical and nontechnical skills for endovascular teams.
  • To explore the potential of VR simulation in improving patient outcomes.

Main Methods:

  • Review of advancements in endovascular VR simulation technology.
  • Discussion of immersive simulated hybrid angiosuites for team training.
  • Exploration of patient-specific anatomy VR simulation development.
  • Examination of skill assessment tools for VR training.

Main Results:

  • Endovascular VR simulation has progressed to sophisticated systems with advanced haptics and dynamic controls.
  • Immersive VR enables training for crisis resource management and team coordination.
  • Patient-specific VR simulations are emerging for personalized training.
  • Objective assessment tools are being developed to complement VR training.

Conclusions:

  • VR simulation offers a safe environment for deliberate practice in endovascular procedures.
  • Advanced VR technologies are crucial for training entire endovascular teams.
  • Simulation-based training is key to bridging the gap between new technologies and improved patient outcomes.