Time-Dependent Recovery Dynamics of Visual Fatigue Under Blue Light Conditions: Insights to Dynamic Pupillometry

Computer Vision Syndrome, or Digital Eye Strain, is increasingly relevant to screen-intensive professions such as air traffic control. Visual fatigue, however, remains comparatively underexplored relative to cognitive fatigue, and existing non-invasive measures are often subjective or oversimplified. This study assesses dynamic pupillometry as an objective measure of visual fatigue under varying blue-light exposures. Ten participants completed a simplified air traffic controller’s visual task under High Blue Light (HBL) and Reduced Blue Light (RBL) conditions of 3, 5 and 9 minutes. Constriction Velocity (CV), Maximum Constriction Velocity (MCV) and Dilation Velocity (DV) were obtained with the Neuroptics NPi-300. Recovery was measured at 0, 2 and 4 minutes post-exposure. Results revealed a main effect of recovery for ΔCV, ΔMCV and ΔDV, and a significant interaction between condition and recovery for ΔMCV and ΔDV. ΔDV was most responsive to blue-light variations, supporting dynamic pupillometry as an objective tool for assessing visual fatigue.

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Publication Details

Journal
International Journal of Human-Computer Interaction
Published
2026-09-28
DOI
https://doi.org/10.1080/10447318.2026.2728826
Primary Topic
Ergonomics and Musculoskeletal Disorders
Type
article
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article

Time-Dependent Recovery Dynamics of Visual Fatigue Under Blue Light Conditions: Insights to Dynamic Pupillometry

Sameer Alam, Sun Woh Lye, Meng-Hsueh Hsieh, Zhi Jun Lim et al.
International Journal of Human-Computer Interaction
Ergonomics and Musculoskeletal Disorders
article

Time-Dependent Recovery Dynamics of Visual Fatigue Under Blue Light Conditions: Insights to Dynamic Pupillometry

Sameer Alam, Sun Woh Lye, Meng-Hsueh Hsieh, Zhi Jun Lim, Kai Li Carrie Pang
article en

Abstract

Computer Vision Syndrome, or Digital Eye Strain, is increasingly relevant to screen-intensive professions such as air traffic control. Visual fatigue, however, remains comparatively underexplored relative to cognitive fatigue, and existing non-invasive measures are often subjective or oversimplified. This study assesses dynamic pupillometry as an objective measure of visual fatigue under varying blue-light exposures. Ten participants completed a simplified air traffic controller’s visual task under High Blue Light (HBL) and Reduced Blue Light (RBL) conditions of 3, 5 and 9 minutes. Constriction Velocity (CV), Maximum Constriction Velocity (MCV) and Dilation Velocity (DV) were obtained with the Neuroptics NPi-300. Recovery was measured at 0, 2 and 4 minutes post-exposure. Results revealed a main effect of recovery for ΔCV, ΔMCV and ΔDV, and a significant interaction between condition and recovery for ΔMCV and ΔDV. ΔDV was most responsive to blue-light variations, supporting dynamic pupillometry as an objective tool for assessing visual fatigue.

International Journal of Human-Computer Interaction
Nanyang Technological University (SG), Air Traffic Management Research Institute (SG)
Good health and well-being
Openalex Percentile: Top 7%
Ergonomics and Musculoskeletal Disorders
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Time-Dependent Recovery Dynamics of Visual Fatigue Under Blue Light Conditions: Insights to Dynamic Pupillometry — Sameer Alam, Sun Woh Lye, et al. · International Journal of Human-Computer Interaction (2026) | TGRS Research Map | TGRS