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Mozart's Music Reduces Fixation Loss in Visual Field Testing
Rintra Wongvisavavit1, Autsadawut Phoolsawat2, Pakin Piriyalukkul2
1Princess Srisavangavadhana Faculty of Medicine, Chulabhorn Royal Academy, 906 Kamphaeng Phet 6 Rd. Lak Si, Bangkok, Thailand, cra.ac.th.
Journal of Ophthalmology
|April 6, 2026
Summary
Listening to Mozart's music significantly improved fixation loss (FL) in visual field testing for healthy Thai individuals. This suggests Mozart may enhance concentration and improve the reliability of eye exams.
Area of Science:
- Ophthalmology
- Neuroscience
- Music Psychology
Background:
- Visual field testing is crucial for diagnosing and monitoring optic nerve disorders.
- Test reliability, particularly fixation loss (FL), can be affected by patient concentration.
- Exploring non-pharmacological interventions to improve test accuracy is of clinical interest.
Purpose of the Study:
- To investigate the effect of Mozart's music on the reliability of visual field testing in healthy Thai adults.
- To determine if listening to Mozart's Sonata for Two Pianos (K. 448) can reduce fixation loss during automated perimetry.
Main Methods:
- 163 perimetry-naive participants underwent automated perimetry (Humphrey Field Analyzer III, SITA standard 24-2).
- Participants were randomized into three groups: control, headphones (noise-canceling), and Mozart music.
- Fixation loss (FL), false positives (FP), false negatives (FN), and other perimetric indices were analyzed.
Main Results:
- The Mozart group showed a significantly lower mean percentage of fixation loss (6.4%) compared to the control group (14.3%) (p=0.03).
- No significant differences were found in false positives, false negatives, or test duration among the groups.
- Key perimetric indices like mean deviation and pattern standard deviation remained within normal ranges across all groups.
Conclusions:
- Mozart's music may enhance concentration and spatial reasoning during visual field testing.
- Incorporating Mozart's music into clinical settings could potentially improve fixation loss, a key indicator of visual field test reliability.

