Enhancing Orthopedic Surgical Training With Interactive Photorealistic 3D Visualization

Fuente: arXiv
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Hauptverfasser: Lekar, Roni, Gerth, Tatiana, Prokudin, Sergey, Seibold, Matthias, Bürgin, Reto, Vella, Benjamin, Hoch, Armando, Tang, Siyu, Fürnstahl, Philipp, Grabner, Helmut
Format: Preprint
Veröffentlicht: 2025
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author Lekar, Roni
Gerth, Tatiana
Prokudin, Sergey
Seibold, Matthias
Bürgin, Reto
Vella, Benjamin
Hoch, Armando
Tang, Siyu
Fürnstahl, Philipp
Grabner, Helmut
author_facet Lekar, Roni
Gerth, Tatiana
Prokudin, Sergey
Seibold, Matthias
Bürgin, Reto
Vella, Benjamin
Hoch, Armando
Tang, Siyu
Fürnstahl, Philipp
Grabner, Helmut
contents Surgical training integrates several years of didactic learning, simulation, mentorship, and hands-on experience. Challenges include stress, technical demands, and new technologies. Orthopedic education often uses static materials like books, images, and videos, lacking interactivity. This study compares a new interactive photorealistic 3D visualization to 2D videos for learning total hip arthroplasty. In a randomized controlled trial, participants (students and residents) were evaluated on spatial awareness, tool placement, and task times in a simulation. Results show that interactive photorealistic 3D visualization significantly improved scores, with residents and those with prior 3D experience performing better. These results emphasize the potential of the interactive photorealistic 3D visualization to enhance orthopedic training.
format Preprint
id arxiv_https___arxiv_org_abs_2506_13389
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Enhancing Orthopedic Surgical Training With Interactive Photorealistic 3D Visualization
Lekar, Roni
Gerth, Tatiana
Prokudin, Sergey
Seibold, Matthias
Bürgin, Reto
Vella, Benjamin
Hoch, Armando
Tang, Siyu
Fürnstahl, Philipp
Grabner, Helmut
Human-Computer Interaction
Surgical training integrates several years of didactic learning, simulation, mentorship, and hands-on experience. Challenges include stress, technical demands, and new technologies. Orthopedic education often uses static materials like books, images, and videos, lacking interactivity. This study compares a new interactive photorealistic 3D visualization to 2D videos for learning total hip arthroplasty. In a randomized controlled trial, participants (students and residents) were evaluated on spatial awareness, tool placement, and task times in a simulation. Results show that interactive photorealistic 3D visualization significantly improved scores, with residents and those with prior 3D experience performing better. These results emphasize the potential of the interactive photorealistic 3D visualization to enhance orthopedic training.
title Enhancing Orthopedic Surgical Training With Interactive Photorealistic 3D Visualization
topic Human-Computer Interaction
url https://arxiv.org/abs/2506.13389