NATURE NEUROSCIENCE
>> Thursday, May 19, 2011
Nature Neuroscience
(ISSN 1097-6256)
Nature Publishing Group
Description,
Correlated network activity is important in the development of many neural circuits. Watt et al.
characterize monsynaptic connections between Purkinje cells of the juvenile cerebellum and use these
measurements to model the generation of traveling waves of activity between connected Purkinje cells. They validate their model with observations in juvenile cerebellar cortex. (p 463) Manipulations of retinal activity
modulate thalamic firing patterns (p 390) MicroRNA regulates adult neurogenesis (pp 369 and 399)
Paracrine control of oligodendrocyte differentiation (p 418) Tonotopic differences in synaptic properties
(p 444)
DOWNLOAD
(ISSN 1097-6256)
Nature Publishing Group
Description,
Correlated network activity is important in the development of many neural circuits. Watt et al.
characterize monsynaptic connections between Purkinje cells of the juvenile cerebellum and use these
measurements to model the generation of traveling waves of activity between connected Purkinje cells. They validate their model with observations in juvenile cerebellar cortex. (p 463) Manipulations of retinal activity
modulate thalamic firing patterns (p 390) MicroRNA regulates adult neurogenesis (pp 369 and 399)
Paracrine control of oligodendrocyte differentiation (p 418) Tonotopic differences in synaptic properties
(p 444)
DOWNLOAD
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