Virtual and Augmented Reality Enhancements to Medical and Science Student Physiology and Anatomy Test Performance: A Systematic Review and Meta-Analysis
- PMID: 33378557
- DOI: 10.1002/ase.2049
Virtual and Augmented Reality Enhancements to Medical and Science Student Physiology and Anatomy Test Performance: A Systematic Review and Meta-Analysis
Abstract
Virtual and augmented reality have seen increasing employment for teaching within medical and health sciences programs. For disciplines such as physiology and anatomy, these technologies may disrupt the traditional modes of teaching and content delivery. The objective of this systematic review and meta-analysis is to evaluate the impact of virtual reality or augmented reality on knowledge acquisition for students studying preclinical physiology and anatomy. The protocol was submitted to Prospero and literature search undertaken in PubMed, Embase, ERIC, and other databases. Citations were reviewed and articles published in full assessing learning or knowledge acquisition in preclinical physiology and anatomy from virtual or augmented reality were included. Of the 919 records found, 58 eligible articles were reviewed in full-text, with 8 studies meeting full eligibility requirements. There was no significant difference in knowledge scores from combining the eight studies (626 participants), with the pooled difference being a non-significant increase of 2.9 percentage points (95% CI [-2.9; 8.6]). For the four studies comparing virtual reality to traditional teaching, the pooled treatment effect difference was 5.8 percentage points (95% CI [-4.1; 15.7]). For the five studies comparing augmented reality to traditional teaching, the pooled treatment effect difference was 0.07 (95% CI [-7.0; 7.2]). Upon review of the literature, it is apparent that educators could benefit from adopting assessment processes that evaluate three-dimensional spatial understanding as a priority in physiology and anatomy. The overall evidence suggests that although test performance is not significantly enhanced with either mode, both virtual and augmented reality are viable alternatives to traditional methods of education in health sciences and medical courses.
Keywords: anatomy education; augmented reality; health sciences education; medical education; meta-analysis; mixed reality; physiology education; systematic review; technology-enhanced education; virtual reality.
© 2020 American Association for Anatomy.
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References
LITERATURE CITED
-
- Albrecht UV, Folta-Schoofs K, Behrends M, von Jan U. 2013. Effects of mobile augmented reality learning compared to textbook learning on medical students: Randomized controlled pilot study. J Med Internet Res 15:e182.
-
- Barmaki R, Yu K, Pearlman R, Shingles R, Bork F, Osgood GM, Navab N. 2019. Enhancement of anatomical education using augmented reality: An empirical study of body painting. Anat Sci Educ 12:599-609.
-
- Birt J, Stromberga Z, Cowling M, Moro C. 2018. Mobile mixed reality for experiential learning and simulation in medical and health sciences education. Information 9:31.
-
- Bork F, Stratmann L, Enssle S, Eck U, Navab N, Waschke J, Kugelmann D. 2019. The benefits of an augmented reality magic mirror system for integrated radiology teaching in gross anatomy. Anat Sci Educ 12:585-598.
-
- Boyles B. 2017. Virtual reality and augmented reality in education. West Point, NY: Center for Teaching Excellence, United States Military Academy. Master Teaching Program Dissertation. 12 p.
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