Retrospective study on Encephalitozoon cuniculi infections in 118 cat and 9 dog eyes
Abstract Purpose This study aims to inform about the clinical image, diagnostic possibilities, and treatment options for cats and dogs diagnosed with ocular encephalitozoonosis. Materials and Methods Medical records of 7 dogs and 75 cats with ocular encephalitozoonosis presented at the Clinical Unit of Ophthalmology of the University of Veterinary ...
Sophie Hofmann‐Wellenhof, Barbara Nell
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RTA408 alleviates retinal ganglion cells damage in mouse glaucoma by inhibiting excessive autophagy. [PDF]
Qian H+9 more
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ABSTRACT Objective To determine if the area of the canine optic nerve head (ONH) is related to the peripapillary retinal nerve fiber layer (RNFL) thickness. Animals Studied A total of 44 eyes of 22 adult normal laboratory Beagles. Procedures In this retrospective study, confocal scanning laser ophthalmoscopy (cSLO) and spectral domain optical coherence
Colleen E. Dwyer+6 more
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Neuronal density in the human retinal ganglion cell layer from 16–77 years
Alison M. Harman+3 more
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Spatial Adaptation of Primate Retinal Ganglion Cells between Artificial and Natural Stimuli
Vystrčilová M+11 more
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Blue Light Damages Retinal Ganglion Cells Via Endoplasmic Reticulum Stress and Autophagy in Chickens. [PDF]
Pan D+5 more
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Dual role for pannexin 1 at synapses: regulating functional and morphological plasticity
Abstract figure legend Pannexin 1 (PANX1) regulation of dendritic spines. The postnatal decrease in PANX1 expression could release key spine cytoskeleton‐regulating proteins enabling spine stabilization. Does the physiological decrease in neuronal PANX1 levels across brain development underlie dendritic spine maturation?
Adriana Casillas Martinez+3 more
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Oral 7,8-Dihydroxyflavone Protects Retinal Ganglion Cells by Modulating the Gut-Retina Axis and Inhibiting Ferroptosis via the Indoleacrylic Acid-AhR-ALDH1A3-FSP1 Pathway. [PDF]
Zhou Y+7 more
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Persistence of quantal synaptic vesicle recycling in virtual absence of dynamins
Abstract figure legend Figure depicts the key finding from this study. While loss of all dynamins severely debilitates synaptic vesicle retrieval following repetitive activity, retrieval and recycling of individual synaptic vesicles following spontaneous fusion or sparse stimulation are minimally affected.
Olusoji A. T. Afuwape+4 more
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