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Davis ZW, Chapman B, Cheng HJ. (2015) Increasing Spontaneous Retinal Activity before Eye Opening Accelerates the Development of Geniculate Receptive Fields. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 35: 14612-23
Failor S, Chapman B, Cheng HJ. (2015) Retinal waves regulate afferent terminal targeting in the early visual pathway. Proceedings of the National Academy of Sciences of the United States of America. 112: E2957-66
Davis ZW, Sun C, Derieg B, et al. (2015) Epibatidine blocks eye-specific segregation in ferret dorsal lateral geniculate nucleus during stage III retinal waves. Plos One. 10: e0118783
Speer CM, Sun C, Liets LC, et al. (2014) Eye-specific retinogeniculate segregation proceeds normally following disruption of patterned spontaneous retinal activity. Neural Development. 9: 25
Dursun I, Jakubowska-Do?ru E, Elibol-Can B, et al. (2013) Effects of early postnatal alcohol exposure on the developing retinogeniculate projections in C57BL/6 mice. Alcohol (Fayetteville, N.Y.). 47: 173-9
Rubin CM, van der List DA, Ballesteros JM, et al. (2011) Mouse mutants for the nicotinic acetylcholine receptor ß2 subunit display changes in cell adhesion and neurodegeneration response genes. Plos One. 6: e18626
Speer CM, Sun C, Chapman B. (2011) Activity-dependent disruption of intersublaminar spaces and ABAKAN expression does not impact functional on and off organization in the ferret retinogeniculate system. Neural Development. 6: 7
Speer CM, Mikula S, Huberman AD, et al. (2010) The developmental remodeling of eye-specific afferents in the ferret dorsal lateral geniculate nucleus. Anatomical Record (Hoboken, N.J. : 2007). 293: 1-24
Sun C, Speer CM, Wang GY, et al. (2008) Epibatidine application in vitro blocks retinal waves without silencing all retinal ganglion cell action potentials in developing retina of the mouse and ferret. Journal of Neurophysiology. 100: 3253-63
Huberman AD, Feller MB, Chapman B. (2008) Mechanisms underlying development of visual maps and receptive fields. Annual Review of Neuroscience. 31: 479-509
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