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Extra resources for Devel., Dynamics and Pathology of Neuronal Networks [Prog. in Brain Res. 147]

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The spatial ordering of axonal arborizations of retinal ganglion Many axonal projections within the brain establish within their target a topographic map organized such that the spatial arrangement of the neurons of origin is re-represented by the ordering of their axon terminations; thereby neighboring cells project to *Corresponding author. 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.

Further, these results suggest that axon-axon interactions play a critical role in map development. These findings also reveal a hierarchy in the mechanisms for generating topographic maps, showing that molecular axon guidance information provided by ephrin-As and EphAs can dominate over activity-dependent patterning mechanisms that influence the establishment of coincident arbors in the SC Fig. 4. Phenotypic defects in Isl2-EphA3 knock-in mice. (A) In wild-type mice the T-N axis of the retina maps along the A-P axis of the SC.

And Matus, A. (1998) Rapid actin-based plasticity in dendritic spines. Neuron, 20: 847–854. A. A. (2000) Decreased dendritic spine density on prefrontal cortical pyramidal neurons in schizophrenia. Arch. Gen. Psychiatry, 57: 65–73. A. A. (2001) Dendritic spine density in schizophrenia and depression. Arch. Gen. Psychiatry, 58: 203. Goda, Y. W. (2003) Mechanisms of synapse assembly and disassembly. Neuron, 40: 243–264. , Kasthuri, N. B. (2002) Long-term dendritic spine stability in the adult cortex.

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