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The working threshold approach to Friedmann visual field analyser screening
Summary
This study on visual field screening found that using an individualized working threshold improves the accuracy of the Friedmann Visual Field Analyser Mark II in identifying normal eyes. This approach enhances sensitivity testing for visual field defects.
Area of Science:
- Ophthalmology
- Visual Science
- Medical Devices
Background:
- Central visual field screening is crucial for detecting vision impairments.
- The Friedmann Visual Field Analyser Mark II is a common tool for visual field testing.
- Variability in device settings can affect screening accuracy.
Purpose of the Study:
- To evaluate the performance of the Friedmann Visual Field Analyser Mark II.
- To investigate the impact of individualized working thresholds versus age-predicted filters on screening results.
- To determine if an individualized threshold approach improves the identification of normal visual fields.
Main Methods:
- Central visual field screening of 2223 eyes without known defects using the Friedmann Visual Field Analyser Mark II.
- Comparison of stimuli visibility at various filter settings, including age-predicted filters and individually determined working thresholds.
- Analysis of the difference between mean working thresholds and age filters.
Main Results:
- Significant variation was observed in filter settings and working thresholds among participants.
- 803 eyes (36.1%) could perceive all stimuli at settings above the age-predicted filter.
- The difference between mean working threshold and age filter ranged from 0.22 to 0.40 log units, peaking in middle age groups.
Conclusions:
- An individualized working threshold approach enhances the performance of the Friedmann Visual Field Analyser Mark II.
- Using an individually determined threshold as a criterion for sensitivity depression improves the accuracy of identifying normal visual fields.
- This method offers a more precise assessment of visual field sensitivity compared to standard age-predicted filters.