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Is quantitative pupillometry affected by ambient light? A prospective crossover study.
Sanna Holmskär1, Malin Öhrn1, Moa Furudahl1
1The Department of Anesthesia and Intensive Care Medicine, Karolinska University Hospital, Stockholm, Sweden.
Journal of Clinical Monitoring and Computing
|April 10, 2025
Summary
Ambient light significantly impacts quantitative pupillometry (QP) and the Neurological Pupil index (NPi) in critically ill patients. Adjusting for light is crucial for accurate NPi interpretation in critical care settings.
Area of Science:
- Neurology
- Critical Care Medicine
- Ophthalmology
Background:
- Pupillary examination is fundamental in neurological assessment.
- Quantitative pupillometry (QP) enhances the reliability of pupillary assessments.
- The influence of ambient light on QP, specifically the Neurological Pupil index (NPi), requires clarification in critical care.
Purpose of the Study:
- To investigate the effect of ambient light variations on quantitative pupillometry (QP) parameters.
- To determine the impact of different light conditions on the Neurological Pupil index (NPi) in critically ill patients.
Main Methods:
- Prospective crossover study involving 20 adult patients requiring invasive ventilation.
- Pupillometry was conducted sequentially under bright light (BC1), dark (DC), and bright light (BC2) conditions.
- Primary analysis compared NPi values across light conditions; secondary analysis examined other QP parameters.
Main Results:
- Median NPi was significantly lower in bright light compared to dark conditions.
- A decrease of 0.6 or more in NPi was observed in 25% of participants under bright light.
- NPi increased significantly when transitioning from bright to dark conditions, with no difference between two dark measurements.
Conclusions:
- Ambient light levels demonstrably affect QP parameters, including NPi, in critically ill patients.
- Accurate interpretation of QP requires consideration of the prevailing light environment.
- Future research should explore automated light correction for enhanced clinical utility of QP.

