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The potential of stem cell-based therapy for retinal repairElectrical Stimulation as a Means for Improving Vision.Optic neuropathy and increased retinal glial fibrillary acidic protein due to microbead-induced ocular hypertension in the rabbit.Acetylation and deacetylation in cancer stem-like cells.Ezh2 does not mediate retinal ganglion cell homeostasis or their susceptibility to injury.Ephrin-A2 and -A3 are negative regulators of the regenerative potential of Möller cells.IGFBPL1 Regulates Axon Growth through IGF-1-mediated Signaling Cascades.Neuroimmflammation and microglia in glaucoma: time for a paradigm shift.Optimization of Optomotor Response-based Visual Function Assessment in Mice.Author Correction: Commensal microflora-induced T cell responses mediate progressive neurodegeneration in glaucomaCommensal microflora-induced T cell responses mediate progressive neurodegeneration in glaucomaPolybenzyl Glutamate Biocompatible Scaffold Promotes the Efficiency of Retinal Differentiation toward Retinal Ganglion Cell Lineage from Human-Induced Pluripotent Stem CellsMouse retinal cell behaviour in space and time using light sheet fluorescence microscopyElectrical Stimulation Induces Retinal Müller Cell Proliferation and Their Progenitor Cell PotentialVisual Contrast Sensitivity Correlates to the Retinal Degeneration in Rhodopsin Knockout Mice
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P50
description
researcher ORCID ID = 0000-0003-4285-615X
@en
wetenschapper
@nl
name
Kin-Sang Cho
@ast
Kin-Sang Cho
@en
Kin-Sang Cho
@es
Kin-Sang Cho
@nl
type
label
Kin-Sang Cho
@ast
Kin-Sang Cho
@en
Kin-Sang Cho
@es
Kin-Sang Cho
@nl
prefLabel
Kin-Sang Cho
@ast
Kin-Sang Cho
@en
Kin-Sang Cho
@es
Kin-Sang Cho
@nl
P31
P496
0000-0003-4285-615X