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Altered spatial summation optimizes visual function in axial myopia

delete2020-07-22
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OA
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V
Victoria Stapley
R
Roger S. Anderson
K
Kathryn J. Saunders
P
Pádraig J. Mulholland *
DOI:10.1038/s41598-020-67893-8delete
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Abstract

Abstract

En 中文
This study demonstrates significant differences between the area of complete spatial summation (Ricco's area, RA) in eyes with and without non-pathological, axial myopia. Contrast thresholds were measured for six stimuli (0.01-2.07 deg(2)) presented at 10o eccentricity in 24 myopic subjects and 20 age-similar non-myopic controls, with RA estimated using iterative two-phase regression analysis. To explore the effects of axial length-induced variations in retinal image size (RIS) on the measurement of RA, refractive error was separately corrected with (i) trial lenses at the anterior focal point (near constant inter-participant RIS in mm), and (ii) contact lenses (RIS changed with axial length). For spectacle corrected measurements, RA was significantly larger in the myopic group, with a significant positive correlation also being observed between RA and measures of co-localised peripheral ocular length. With contact lens correction, there was no significant difference in RA between the groups and no relationship with peripheral ocular length. The results suggest RA changes with axial elongation in myopia to compensate for reduced retinal ganglion cell density. Furthermore, as these changes are only observed when axial length induced variations in RIS are accounted for, they may reflect a functional adaptation of the axially-myopic visual system to an enlarged RIS.
Keywords:
OPTICAL COHERENCE TOMOGRAPHY
PERIPHERAL REFRACTION
LINEAR-REGRESSION
RETINAL THICKNESS
RECEPTIVE-FIELDS
GANGLION-CELLS
TIME OUTDOORS
S-CONE
DOPAMINE
SENSITIVITY
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Journal

Scientific Reports cover
Scientific Reports
IF:
3.9
Papers:
27.1W
Citations:
83.5W

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U
Ulster University
Scholars:
5.7K
Papers: 5.9K
Citations: 25