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1.
Artigo em Inglês | MEDLINE | ID: mdl-34300104

RESUMO

The effect of blue light filters on the anomaloscopic examination was analyzed. Thirty subjects (18-43 y, 20 female, 10 male) without color vision disorders were examined in 4 filter conditions: no filter (F-0), Blue Control Hoya (F-BC), Med-1 JZO (F-Med1) and 450 Eschenbach (F-450). Both Rayleigh test (red-green axis) and Moreland test (blue-green axis) were performed. Application of F-BC filter shows negligible effect on color vision perception in both tests. Contrary to this, the application of strong F-450 filter causes significant shift in Moreland test towards tritanopy and the decrease in correlations of Moreland parameters with Rayleigh test parameters. The application of medium strong F-Med1 filter causes the slight shift in Moreland test towards the center of the Moreland scale and increases the Spearman correlations between Moreland and Rayleigh test parameters. This observation suggests that the about 15-40% reduction of blue diode intensity in the Moreland test may be beneficial in detecting mild changes in color vision perception in the blue-green axis and may improve its usefulness in evaluating the color vision perception disorders accompanying different illnesses, such as diabetes, glaucoma, neuritis optica, or cataract. The discussion concerning the modifications of Moreland test construction is also presented.


Assuntos
Visão de Cores , Glaucoma , Percepção de Cores , Testes de Percepção de Cores , Feminino , Humanos , Masculino , Exame Neurológico
2.
PLoS One ; 16(5): e0251903, 2021.
Artigo em Inglês | MEDLINE | ID: mdl-34019572

RESUMO

AIM: To validate the reference ranges proposed by the manufacturer of the Oculus HMC Anomaloscope MR for Rayleigh and Moreland tests in healthy young adults. METHOD: The manual Rayleigh (red-green) and the Moreland (blue-green) anomaloscope tests were performed on 90 healthy subjects (54 female, 36 male, 178 eyes) residing in Poland, aged between 18-45 years, and without color vision disorders (assessed with HRR test). The analyzed parameters for both the Rayleigh and the Moreland tests were as follows: the lower (R1/M1) and the upper (R2/M2) limits; the center (RC/MC) and the width (RW/MW) of the matching ranges. RESULTS: The results of the Rayleigh test were similar to the values proposed in the anomaloscope user's manual, however, with a small shift of RC and R2 towards the red color. The double-peak distribution of R2 with a small second peak (approximately at R2 = 52) was mainly due to the measurements in male subjects (nmale = 8, nfemale = 2), which suggests that this group might be diagnosed with subtle protanomaly. The results of the Moreland test showed a high MW which did not correspond to the reference range described in the anomaloscope user's manual. The observed significant correlations between R1 and M1 suggest that the M1 parameter seems to be the best indicator of blue vision quality. CONCLUSIONS: Oculus HMC Anomaloscope MR is a sensitive tool for detection of prot-deuteranomalies but the reference ranges for young adults require a certain adjustment towards the red color. The parameters obtained for the Moreland test varied significantly between the subjects and therefore the test should not be used as is to diagnose color vision deficits in the green-blue area (tritanomaly).


Assuntos
Testes de Percepção de Cores/normas , Percepção de Cores/fisiologia , Defeitos da Visão Cromática/diagnóstico , Visão de Cores/fisiologia , Oftalmoscopia/métodos , Adolescente , Adulto , Testes de Percepção de Cores/instrumentação , Feminino , Voluntários Saudáveis , Humanos , Masculino , Pessoa de Meia-Idade , Polônia , Valores de Referência , Reprodutibilidade dos Testes
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