J. van Pelt's Devel., Dynamics and Pathology of Neuronal Networks [Prog. PDF

By J. van Pelt

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1016/S0079-6123(04)47005-8 43 44 cells (RGCs) within the OT/SC maps the retina, and therefore visual space, along two sets of orthogonally oriented axes: the temporal-nasal (T-N) axis of the retina along the anterior-posterior (A-P) axis of the OT/SC, and the dorsal-ventral (D-V) retinal axis along the lateral-medial (L-M) OT/SC axis. Here we summarize recent findings on the development of retinotopic maps in the brain, focusing on work from our laboratory using as model systems the chick retinotectal projection and rodent retinocollicular projection.

Dr. O’Leary is senior editor of the Journal of Neuroscience. Progress in Brain Research, Vol. 147 ISSN 0079-6123 Copyright ß 2005 Elsevier BV. M. O’Leary* and Todd McLaughlin Molecular Neurobiology Laboratory, The Salk Institute, 10010 North Torrey Pines Road, La Jolla, CA 92037, USA Abstract: This chapter summarizes mechanisms that control the development of retinotopic maps in the brain, focusing on work from our laboratory using as models the projection of retinal ganglion cells (RGCs) to the chick optic tectum (OT) or rodent superior colliculus (SC).

M. (2003) Compartmentalized synthesis and degradation of proteins in neurons. Neuron, 40: 347–359. W. and Denk, W. (1996) Direct measurement of coupling between dendritic spines and shafts. Science, 272: 716–719. , Jiang, M. L. (2000) Spine loss and other dendritic abnormalities in epilepsy. Hippocampus, 10: 617–625. W. J. (2000) Cellular abnormalities and synaptic plasticity in seizure disorders of the immature nervous system. Ment. Retard. Dev. Disabil. Res. , 6: 258–267. , Welker, E. and Svoboda, K.

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Devel., Dynamics and Pathology of Neuronal Networks [Prog. in Brain Res. 147] by J. van Pelt


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