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Investigative Ophthalmology & Visual Science|March 1, 2006
Early response of neurons and glial cells to hypoxia in the retinaCharanjit Kaur, Viswanathan Sivakumar, Wallace S FouldsInvestigative Ophthalmology & Visual Science|March 20, 2012
Electrophysiological findings in a porcine model of selective retinal capillary closureChi D Luu, Wallace S Foulds, Charanjit KaurClinical Ophthalmology (Auckland, N.Z.)|August 12, 2009
Hypoxia-ischemia and retinal ganglion cell damageCharanjit Kaur, Wallace S Foulds, Eng-Ang LingInvestigative Ophthalmology & Visual Science|November 14, 2013
Progressive myopia or hyperopia can be induced in chicks and reversed by manipulation of the chromaticity of ambient lightWallace S Foulds, Veluchamy A Barathi, Chi D LuuOphthalmology|March 21, 2007
Features of the multifocal electroretinogram may predict the rate of myopia progression in childrenChi D Luu, Wallace S Foulds, Donald T H TanProgress in Neurobiology|June 5, 2018
Retinal microglia - A key player in healthy and diseased retinaGurugirijha Rathnasamy, Wallace S Foulds, Eng-Ang Ling, et al.Molecular Neurobiology|May 16, 2016
Glutamate Inhibits the Pro-Survival Effects of Insulin-Like Growth Factor-1 on Retinal Ganglion Cells in Hypoxic Neonatal Rat RetinaGurugirijha Rathnasamy, Wallace S Foulds, Eng Ang Ling, et al.Experimental Eye Research|November 30, 2014
Vascular changes in the developing rat retina in response to hypoxiaGurugirijha Rathnasamy, Viswanathan Sivakumar, Wallace S Foulds, et al.Investigative Ophthalmology & Visual Science|May 29, 2009
Cellular and vascular changes in the retina of neonatal rats after an acute exposure to hypoxiaCharanjit Kaur, Viswanathan Sivakumar, Wallace S Foulds, et al.Journal of Neuropathology and Experimental Neurology|March 23, 2012
Hypoxia-induced activation of N-methyl-D-aspartate receptors causes retinal ganglion cell death in the neonatal retinaCharanjit Kaur, Viswanathan Sivakumar, Wallace S Foulds, et al.Pageof 2