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Simulations and Virtual Learning Supporting Clinical Education During the COVID 19 Pandemic

Overview
Publisher Dove Medical Press
Specialty Medical Education
Date 2020 Aug 22
PMID 32821192
Citations 30
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Abstract

Currently, the COVID-19 pandemic has a critical impact on clinical education, and it has resulted in the widespread disruption of clinical assessment. Clinical mentors and students in all the health professions are working within the most troublesome of circumstances in the hospital-based educational settings. Medical educationists ought to concentrate on the health and the safety of the students and communities. The safety issues have prompted the Ministry of Health to suggest that schools develop action plans for the adoption of available technologies to keep medical education moving forward with high quality, active, and interactive learning for more demanding tomorrow. A key challenge for medical educators is to simulate the clinical encounters at this unprecedented time, and this emphasized the necessity of applying virtual simulation-based educational tools in clinical education. This commentary explores how COVID-19 has challenged medical education. It also has discussed the future implications and potencial challenges of incorporating simulation-based virtual learning technologies into the medical curriculum, for the future of clinical education, and students' or residents' competency evaluation.

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References
1.
McGaghie W, Issenberg S, Petrusa E, Scalese R . A critical review of simulation-based medical education research: 2003-2009. Med Educ. 2010; 44(1):50-63. DOI: 10.1111/j.1365-2923.2009.03547.x. View

2.
Ahmed H, Allaf M, Elghazaly H . COVID-19 and medical education. Lancet Infect Dis. 2020; 20(7):777-778. PMC: 7270510. DOI: 10.1016/S1473-3099(20)30226-7. View

3.
Boursicot K, Kemp S, Ong T, Wijaya L, Goh S, Freeman K . Conducting a high-stakes OSCE in a COVID-19 environment. MedEdPublish (2016). 2023; 9:54. PMC: 10697458. DOI: 10.15694/mep.2020.000054.1. View

4.
Day R . Challenges of biological realism and validation in simulation-based medical education. Artif Intell Med. 2006; 38(1):47-66. DOI: 10.1016/j.artmed.2006.01.001. View

5.
Tabatabai S, Javadi M . Ophthalmic Education and Ophthalmologists Growth Trends in Iran (1979-2016). J Ophthalmic Vis Res. 2019; 14(2):185-194. PMC: 6504715. DOI: 10.4103/jovr.jovr_24_18. View