Quantitative metrics for evaluating surgical dexterity using virtual reality simulations

M Mingyu Wu (Hefei National Research Center for Physical Science at Microscale) C Cham Ying Kit E Eileen Lee Ming Su C Che Fai Yeong S Siti Nor Zawani Ahmmad W William Holderbaum C Chenguang Yang (Beijing National Laboratory for Condensed Matter Physics, Institute of Physics)

Abstract

This study develops and evaluates quantitative metrics to assess surgical dexterity within virtual reality (VR) simulations to enhance surgical training and performance. By employing advanced VR technology, this research systematically investigates the influence of controlled experimental factors—posture, handedness, and visual magnification—on surgical performance. The impact of human factors such as surgical specialty, experience, and lifestyle factors like sleep and caffeine consumption on surgical dexterity is also analyzed. The findings reveal that seated posture, dominant hand usage, and enhanced visual magnification significantly improve surgical precision and efficiency. Contrary to common beliefs, lifestyle factors such as sleep duration and coffee consumption showed minimal impact on performance metrics. The study highlights the potential of VR simulations to provide a controlled, replicable, and safe environment for surgical training, emphasizing the importance of personalized training protocols that cater to individual surgeon’s needs. The insights from this research advocate for integrating quantitative, objective metrics in surgical training programs to refine and accelerate dexterity acquisition, ultimately aiming to improve patient outcomes and surgical care.

Article Details

Journal PLoS ONE
Volume / Issue Vol. 20, Issue 3
Published March 03, 2025
Pages e0318660
ISSN 1932-6203
Publisher Public Library of Science

Journal Info

PLoS ONE

Public Library of Science

ISSN: 1932-6203 Open Access Health Sciences

Authors (7)

M

Mingyu Wu

Hefei National Research Center for Physical Science at Microscale

C

Cham Ying Kit

E

Eileen Lee Ming Su

C

Che Fai Yeong

S

Siti Nor Zawani Ahmmad

W

William Holderbaum

C

Chenguang Yang

Beijing National Laboratory for Condensed Matter Physics, Institute of Physics