Literature DB >> 31871163

Understanding the development of amblyopia using macaque monkey models.

Lynne Kiorpes1.   

Abstract

Amblyopia is a sensory developmental disorder affecting as many as 4% of children around the world. While clinically identified as a reduction in visual acuity and disrupted binocular function, amblyopia affects many low- and high-level perceptual abilities. Research with nonhuman primate models has provided much needed insight into the natural history of amblyopia, its origins and sensitive periods, and the brain mechanisms that underly this disorder. Amblyopia results from abnormal binocular visual experience and impacts the structure and function of the visual pathways beginning at the level of the primary visual cortex (V1). However, there are multiple instances of abnormalities in areas beyond V1 that are not simply inherited from earlier stages of processing. The full constellation of deficits must be taken into consideration in order to understand the broad impact of amblyopia on visual and visual-motor function. The data generated from studies of animal models of the most common forms of amblyopia have provided indispensable insight into the disorder, which has significantly impacted clinical practice. It is expected that this translational impact will continue as ongoing research into the neural correlates of amblyopia provides guidance for novel therapeutic approaches.

Entities:  

Keywords:  amblyopia; comparative vision; macaque monkey; nonhuman primate; visual cortex

Year:  2019        PMID: 31871163      PMCID: PMC6936699          DOI: 10.1073/pnas.1902285116

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  83 in total

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4.  Early monocular defocus disrupts the normal development of receptive-field structure in V2 neurons of macaque monkeys.

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Review 8.  Visual neural development.

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9.  A randomized trial of prescribed patching regimens for treatment of severe amblyopia in children.

Authors:  Jonathan M Holmes; Raymond T Kraker; Roy W Beck; Eileen E Birch; Susan A Cotter; Donald F Everett; Richard W Hertle; Graham E Quinn; Michael X Repka; Mitchell M Scheiman; David K Wallace
Journal:  Ophthalmology       Date:  2003-11       Impact factor: 12.079

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Authors:  Michael X Repka; Roy W Beck; Jonathan M Holmes; Eileen E Birch; Danielle L Chandler; Susan A Cotter; Richard W Hertle; Raymond T Kraker; Pamela S Moke; Graham E Quinn; Mitchell M Scheiman
Journal:  Arch Ophthalmol       Date:  2003-05
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  12 in total

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5.  Co-existence of myopia and amblyopia in a guinea pig model with monocular form deprivation.

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6.  International primate neuroscience research regulation, public engagement and transparency opportunities.

Authors:  Anna S Mitchell; Renée Hartig; Michele A Basso; Wendy Jarrett; Sabine Kastner; Colline Poirier
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7.  Increasing neural network robustness improves match to macaque V1 eigenspectrum, spatial frequency preference and predictivity.

Authors:  Nathan C L Kong; Eshed Margalit; Justin L Gardner; Anthony M Norcia
Journal:  PLoS Comput Biol       Date:  2022-01-07       Impact factor: 4.779

8.  Expression of early growth responsive gene-1 in the visual cortex of monocular form deprivation amblyopic kittens.

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9.  Neural sources of letter and Vernier acuity.

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10.  Temporal Characteristics of Visual Processing in Amblyopia.

Authors:  Xia Hu; Yi Qin; Xiaoxiao Ying; Junli Yuan; Rong Cui; Xiaowei Ruan; Xianghang He; Zhong-Lin Lu; Fan Lu; Fang Hou
Journal:  Front Neurosci       Date:  2021-06-03       Impact factor: 4.677

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