A comparison of virtual reality anatomy models to prosections in station-based anatomy teaching

Geetika Ail*, Frances Freer*, Chui Shan Chan, Melissa Jones, John Broad, Gian Paulo Canale, Pedro Elston, Jessica Leeney, Paula Vickerton

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

5 Citations (Scopus)
7 Downloads (Pure)

Abstract

Immersive virtual reality (i-VR) is a powerful tool that can be used to explore virtual models in three dimensions. It could therefore be a valuable tool to supplement anatomical teaching by providing opportunities to explore spatial anatomical relationships in a virtual environment. However, there is a lack of consensus in the literature as to its effectiveness as a teaching modality when compared to the use of cadaveric material. The aim of our study was to compare the effectiveness of i-VR in facilitating understanding of different anatomical regions when compared with cadaveric prosections for a cohort of first- and second-year undergraduate medical students. Students (n = 92) enrolled in the MBBS program at Queen Mary University of London undertook an assessment, answering questions using either Oculus i-VR headsets, the Human Anatomy VR™ application, or prosection materials. Utilizing ANOVA with Sidak's multiple comparison test, we found no significant difference between prosections and i-VR scores in the abdomen (p = 0.6745), upper limb (p = 0.8557), or lower limb groups (p = 0.9973), suggesting that i-VR may be a viable alternative to prosections in these regions. However, students scored significantly higher when using prosections when compared to i-VR for the thoracic region (p < 0.0001). This may be due to a greater need for visuospatial understanding of 3D relationships when viewing anatomical cavities, which is challenged by a virtual environment. Our study supports the use of i-VR in anatomical teaching but highlights that there is significant variation in the efficacy of this tool for the study of different anatomical regions.

Original languageEnglish
Pages (from-to)763-769
Number of pages7
JournalAnatomical Sciences Education
Volume17
Issue number4
Early online date7 Apr 2024
DOIs
Publication statusPublished - Jun 2024

Keywords

  • anatomy
  • anatomy education
  • applied anatomy
  • digital anatomy
  • learning technology
  • prosection
  • virtual reality

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