TY - JOUR
T1 - The use of augmented reality glasses in central line simulation
T2 - “see one, simulate many, do one competently, and teach everyone”
AU - Huang, Cynthia Y.
AU - Thomas, Jonathan B.
AU - Alismail, Abdullah
AU - Cohen, Avi
AU - Almutairi, Waleed
AU - Daher, Noha S.
AU - Terry, Michael H.
AU - Tan, Laren D.
N1 - Publisher Copyright:
© 2018 Huang et al.
PY - 2018
Y1 - 2018
N2 - Objective: The aim of this study was to investigate the feasibility of using augmented reality (AR) glasses in central line simulation by novice operators and compare its efficacy to standard central line simulation/teaching. Design: This was a prospective randomized controlled study enrolling 32 novice operators. Subjects were randomized on a 1:1 basis to either simulation using the augmented virtual reality glasses or simulation using conventional instruction. Setting: The study was conducted in tertiary-care urban teaching hospital. Subjects: A total of 32 adult novice central line operators with no visual or auditory impair-ments were enrolled. Medical doctors, respiratory therapists, and sleep technicians were recruited from the medical field. Measurements and main results: The mean time for AR placement in the AR group was 71±43 s, and the time to internal jugular (IJ) cannulation was 316±112 s. There was no significant difference in median (minimum, maximum) time (seconds) to IJ cannulation for those who were in the AR group and those who were not (339 [130, 550] vs 287 [35, 475], p=0.09), respectively. There was also no significant difference between the two groups in median total procedure time (524 [329, 792] vs 469 [198, 781], p=0.29), respectively. There was a significant difference in the adherence level between the two groups favoring the AR group (p=0.003). Conclusion: AR simulation of central venous catheters in manikins is feasible and efficacious in novice operators as an educational tool. Future studies are recommended in this area as it is a promising area of medical education.
AB - Objective: The aim of this study was to investigate the feasibility of using augmented reality (AR) glasses in central line simulation by novice operators and compare its efficacy to standard central line simulation/teaching. Design: This was a prospective randomized controlled study enrolling 32 novice operators. Subjects were randomized on a 1:1 basis to either simulation using the augmented virtual reality glasses or simulation using conventional instruction. Setting: The study was conducted in tertiary-care urban teaching hospital. Subjects: A total of 32 adult novice central line operators with no visual or auditory impair-ments were enrolled. Medical doctors, respiratory therapists, and sleep technicians were recruited from the medical field. Measurements and main results: The mean time for AR placement in the AR group was 71±43 s, and the time to internal jugular (IJ) cannulation was 316±112 s. There was no significant difference in median (minimum, maximum) time (seconds) to IJ cannulation for those who were in the AR group and those who were not (339 [130, 550] vs 287 [35, 475], p=0.09), respectively. There was also no significant difference between the two groups in median total procedure time (524 [329, 792] vs 469 [198, 781], p=0.29), respectively. There was a significant difference in the adherence level between the two groups favoring the AR group (p=0.003). Conclusion: AR simulation of central venous catheters in manikins is feasible and efficacious in novice operators as an educational tool. Future studies are recommended in this area as it is a promising area of medical education.
KW - Augmented reality
KW - Central line
KW - Medical education
KW - Simulation
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U2 - 10.2147/AMEP.S160704
DO - 10.2147/AMEP.S160704
M3 - Article
SN - 1179-7258
VL - 9
SP - 357
EP - 363
JO - Advances in Medical Education and Practice
JF - Advances in Medical Education and Practice
ER -