Impact of blur on clinical and occupational colour vision test results

Author:

Álvaro Leticia1ORCID,Formankiewicz Monika A.2ORCID,Waugh Sarah J.3ORCID

Affiliation:

1. Departamento Psicología Experimental, Procesos Cognitivos y Logopedia Universidad Complutense de Madrid Pozuelo de Alarcón Spain

2. Vision and Hearing Sciences Research Centre, School of Psychology and Sports Science Anglia Ruskin University Cambridge UK

3. Centre for Vision across the Life Span, School of Applied Sciences University of Huddersfield Huddersfield UK

Abstract

AbstractPurposeTo evaluate whether colour vision normal (CVN) adults pass two Fletcher–Evans (CAM) lantern tests and to investigate the impact of imposed blur on Ishihara, CAM lantern and computerised colour discrimination test (colour assessment and diagnosis test [CAD] and Cambridge colour test [CCT]) results.MethodsIn a pilot experiment, 20 (16 CVN and 4 colour vision deficient [CVD]) participants with normal VA were tested with the CAM lantern. In the main experiment, the impact of imposed dioptric blur (up to +8.00 D) on visual acuity and the Ishihara test, CAM lantern, CAD and CCT was assessed for 15 CVN participants.ResultsCVN participants can fail the CAM lantern, with specificity of 81.25% (aviation mode) and 75% (clinical mode), despite following the test requirements of participants having at least 0.18 logMAR (6/9) in the better eye. With blur, test accuracy was affected. As expected, significant detrimental effects of blur on test results were found for logMAR VA and CAM lantern (aviation) with +1.00 D or higher. Ishihara, CAD and CCT results were not detrimentally affected until +8.00 D. Yellow‐blue discrimination was more affected by blur for the CAD than the CCT, which was not explained by the different colour spaces used or vectors tested.ConclusionFalse‐positive findings on lantern colour vision tests with small apertures are likely to be increased in patients with blur due to uncorrected refractive error or ocular and visual pathway disease. Other colour vision tests with larger stimuli are more robust to blur.

Funder

University of Huddersfield

Publisher

Wiley

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