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The Effect of Training Using the Combination of Virtual Reality and Augmented Reality in Coronary Artery Surgery on the Learning Rate of Undergraduate Students in the Operating Room

    Authors

    • Fereshteh Sargolzaei 1
    • Ahmad Ghadami 2
    • Athar Omid 3
    • Tayebeh Azarmehr 4

    1 Department of Operating Room, Faculty of Nursing and Midwifery, Zahedan University of Medical Sciences, Zahedan, Iran.

    2 Department of Operating Room, Faculty of Nursing and Midwifery, Isfahan University of Medical Sciences, Isfahan, Iran.

    3 Department of Medical Education, Medical Sciences Education Research Center, Isfahan University of Medical Sciences, Isfahan, Iran.

    4 Department of operating room, Faculty of Nursing and Midwifery, Zabol University of Medical Sciences, Zabol, Iran

,

Document Type : Original Article

10.22038/hmed.2023.69629.1246
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Abstract

Introduction: The complexity of surgical techniques and the limitations of the operating room environment for teaching students have led to the use of new methods to improve performance and reduce errors. The current study aimed to assess the effects of augmented reality- and virtual reality (VAR)-based education on learning among operating room (OR)students in coronary artery bypass graft (CABG)surgery.
Materials & Methods:  This controlled randomized trial was conducted in 2020. Thirty-six OR students were purposefully employed and randomly assigned to intervention (n = 18) and control (n = 18) groups. Participants in the control group received routine training, while the intervention group received VAR training by watching a 360-degree VAR video of CABG surgery in addition to routine training. A researcher-made checklist was used to assess learning (performance). The level of performance was prepared as a researcher-made checklist based on the content of 360-degree video that students saw using virtual glasses (intervention group) and coronary artery bypass surgery in which the control group was routinely scrubbed, which showed students' learning in terms of scores. Data were analyzed by independent t-test, chi-square test.
Results: The mean learning score in the intervention group was 25.56 with a standard deviation of 1.50 and in the control group was 20.76 with a standard deviation of 1.92. The independent t-test showed a significant difference in the intervention and control groups. The mean learning score in the intervention group was significantly higher than the control group (P < 0.05).
Conclusion: The use of virtual reality along with augmented reality before surgery and scrubbing, increased learning in the functional area of ​​undergraduate operating room students.

Keywords

  • Augmented reality. Virtual reality
  • Cardiac surgery
  • Learning
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References
1.Moro C, Štromberga Z, Raikos A, Stirling A.
The effectiveness of virtual and augmented
reality in health sciences and medical
anatomy. Anatomical sciences education.
2017;10(6):549-59.
2. Kine sha, Lili Man, Saeed S. Comparison of
the effect of using two methods of virtual and
traditional education on students' ability-
oriented skills.
3.Baker CJ, Sinha R, Sullivan ME. Development
of a cardiac surgery simulation curriculum:
from needs assessment results to practical
implementation. The Journal of thoracic and
cardiovascular surgery. 2012.7-16:(1)144;
4.Hannani S, Arbkhazaie A, Sadati L,
Arbkhazaie A. The Effect of Education based
on the Spinal Fusion Surgery Simulation on the
Level of Knowledge and Practical skills the 8th
Students. Journal of Nursing Education (JNE).
2019;7(5)
5.Wilson HK, Feins RH. Simulation in
cardiothoracic surgery. Comprehensive
Healthcare Simulation: Surgery and Surgical
Subspecialties: Springer; 2019. p. 263-74.
6.Scavarelli A, Arya A, Teather RJ. Virtual
reality and augmented reality in social
learning spaces: A literature review. Virtual
Reality. 2020:1-21.
7.Kim Y, Kim H, Kim YO. Virtual reality and
augmented reality in plastic surgery: a review.
Archives of plastic surgery. 2017;44(3):179.
8.Pelargos PE, Nagasawa DT, Lagman C, Tenn
S, Demos JV, Lee SJ ,et al. Utilizing virtual and
augmented reality for educational and clinical
enhancements in neurosurgery. Journal of
Clinical Neuroscience. 2017;35:1-4.
9.Ayoub A, Pulijala Y. The application of virtual
reality and augmented reality in Oral &
Maxillofacial Surgery. BMC Oral Health.
2019;19(1):1-8.
10.Izard SG, Juanes JA, Peñalvo FJG, Estella
JMG, Ledesma MJS, Ruisoto P. Virtual reality as
an educational and training tool for medicine.
Journal of medical systems. 2018;42(3):1-5.
11.Jenson CE, Forsyth DM .Virtual reality
simulation: using three-dimensional
technology to teach nursing students. CIN:
Computers, Informatics, Nursing.
2012;30(6):312-8.
12.Makransky G, Lilleholt L. A structural
equation modeling investigation of the
emotional value of immersive virtual reality in
education. Educational Technology Research
and Development. 2018;66(5):1141-64.
13.Martín-Gutiérrez J, Mora CE, Añorbe-Díaz
B, González-Marrero A. Virtual technologies
trends in education. EURASIA Journal of
Mathematics, Science and Technology
Education. 2017;13(2):469-86.
14.Yuen SC-Y, Yaoyuneyong G, Johnson E.
Augmented reality: An overview and five
directions for AR in education. Journal of
Educational Technology Development and
Exchange (JETDE). 2011;4(1):11.
15.Carmigniani J ,Furht B, Anisetti M, Ceravolo
P, Damiani E, Ivkovic M. Augmented reality
technologies, systems and applications.
Multimedia tools and applications.
2011;51(1):341-77.
16.Dunleavy M, Dede C, Mitchell R.
Affordances and limitations of immersive
participatory augmented reality simulations
for teaching and learning. Journal of science
Education and Technology. 2009;18(1):7-22.
17.Akçayır M, Akçayır G, Pektaş HM, Ocak MA.
Augmented reality in science laboratories: The
effects of augmented reality on university
students’ laboratory skills and attitudes
toward science laboratories. Computers in
Human Behavior. 2016;57:334-42.
18.Lin H-CK, Hsieh M-C, Wang C-H, Sie Z-Y,
Chang S-H. Establishment and Usability
Evaluation of an Interactive AR Learning
System on Conservation of Fish. Turkish
Online Journal of Educational Technology-
TOJET. 2011;10(4):181-7.
19.Hutchinson TL, Janiszewski Goodin H.
Nursing student anxiety as a context for
teaching/learning. Journal of Holistic Nursing.
2013;31(1):19-24.
20.Heydarzadeh M, Nourani M, Park J, editors.
An augmented reality platform for CABG
surgery. 2015 IEEE Biomedical Circuits and
Systems Conference (BioCAS); 2015: IEEE.
21.Desselle MR, Brown RA, James AR,
Midwinter MJ, Powell SK, Woodruff MA.
Augmented and virtual reality in surgery.
Computing in Science & Engineering.
2020;22(3):18-26.
22.Uzun M. Augmented Reality in Cardiology.
Anatolian journal of cardiology.
2019;22(Suppl 2):25-8.
23.Piromchai P, Avery A, Laopaiboon M,
Kennedy G, O'Leary S. Virtual reality training
for improving the skills needed for performing
surgery of the ear, nose or throat. Cochrane
Database of Systematic Reviews. 2015.(9)
24.Choi K-S, He X, Chiang VC-L, Deng Z. A
virtual reality based simulator for learning
nasogastric tube placement .Computers in
Biology and Medicine. 2015;57:103-15.
25.Barsom EZ, Graafland M, Schijven MP.
Systematic review on the effectiveness of
augmented reality applications in medical
training. Surgical endoscopy.
2016;30(10):4174-83.
26.Alaker M, Wynn GR, Arulampalam T.
Virtual reality training in laparoscopic
surgery: a systematic review & meta-analysis.
International Journal of Surgery. 2016;29:85-
94.
27.Gasco J, Patel A, Ortega-Barnett J, Branch D,
Desai S, Kuo YF, et al. Virtual reality spine
surgery simulation: an empirical study of its
usefulness. Neurological research.
2014;36(11):968-73.
28.Ribeiro IB, Ngu JM, Lam B-K, Edwards RA.
Simulation-based skill training for trainees in
cardiac surgery: a systematic review. The
Annals of thoracic surgery. 20.972-
82:(3)10;18
29.Moreno R, Mayer RE. Learning science in
virtual reality multimedia environments: Role
of methods and media. Journal of educational
psychology. 2002;94(3):598.
30.Stepan K, Zeiger J, Hanchuk S, Del Signore
A, Shrivastava R, Govindaraj S, et al., editors.
Immersive virtual reality as a teaching tool for
neuroanatomy. International forum of allergy
& rhinology; 2017: Wiley Online Library.
31.Lorenzo G, Pomares J, Lledó A. Inclusion of
immersive virtual learning environments and
visual control systems to support the learning
of students with Asperger syndrome.
Computers & Education. 2013;62:88-101.
32.Papanastasiou G, Drigas A, Skianis C, Lytras
M, Papanastasiou E. Virtual and augmented
reality effects on K-12, higher and tertiary
education students’ twenty-first century skills.
Virtual Reality. 2019;23(4):425-36
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Horizon of Medical Education Development
Volume 14, Issue 4
November 2023
Pages 43-52
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  • Article View: 2,666
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APA

Sargolzaei, F. , Ghadami, A. , Omid, A. and Azarmehr, T. (2023). The Effect of Training Using the Combination of Virtual Reality and Augmented Reality in Coronary Artery Surgery on the Learning Rate of Undergraduate Students in the Operating Room. Horizon of Medical Education Development, 14(4), 43-52. doi: 10.22038/hmed.2023.69629.1246

MLA

Sargolzaei, F. , , Ghadami, A. , , Omid, A. , and Azarmehr, T. . "The Effect of Training Using the Combination of Virtual Reality and Augmented Reality in Coronary Artery Surgery on the Learning Rate of Undergraduate Students in the Operating Room", Horizon of Medical Education Development, 14, 4, 2023, 43-52. doi: 10.22038/hmed.2023.69629.1246

HARVARD

Sargolzaei, F., Ghadami, A., Omid, A., Azarmehr, T. (2023). 'The Effect of Training Using the Combination of Virtual Reality and Augmented Reality in Coronary Artery Surgery on the Learning Rate of Undergraduate Students in the Operating Room', Horizon of Medical Education Development, 14(4), pp. 43-52. doi: 10.22038/hmed.2023.69629.1246

CHICAGO

F. Sargolzaei , A. Ghadami , A. Omid and T. Azarmehr, "The Effect of Training Using the Combination of Virtual Reality and Augmented Reality in Coronary Artery Surgery on the Learning Rate of Undergraduate Students in the Operating Room," Horizon of Medical Education Development, 14 4 (2023): 43-52, doi: 10.22038/hmed.2023.69629.1246

VANCOUVER

Sargolzaei, F., Ghadami, A., Omid, A., Azarmehr, T. The Effect of Training Using the Combination of Virtual Reality and Augmented Reality in Coronary Artery Surgery on the Learning Rate of Undergraduate Students in the Operating Room. Horizon of Medical Education Development, 2023; 14(4): 43-52. doi: 10.22038/hmed.2023.69629.1246

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