Neural circuits undergo massive refinements during postnatal development. In the developing cerebellum, the climbing fiber (CF) to Purkinje cell (PC) network is drastically reshaped by eliminating early-formed redundant CF to PC synapses. To investigate the impact of CF network refinement on PC population activity during postnatal development, we monitored spontaneous CF responses in neighboring PCs and the activity of populations of nearby CF terminals using in vivo two-photon calcium imaging. Population activity is highly synchronized in newborn mice, and the degree of synchrony gradually declines during the first postnatal week in PCs and, to a lesser extent, in CF terminals. Knockout mice lacking P/Q-type voltage-gated calcium channel o...
Climbing fibers (CFs) are thought to contribute to cerebellar plasticity and learning by triggering ...
AbstractMost of the cerebellar Purkinje cells (PCs) of an adult animal are innervated individually b...
Introduction The cerebellum is organized into functional regions each dedicated to process different...
The inferior olive of the medulla oblongata sends glutamatergic afferents to the cerebellum. In adul...
SummaryFunctional neural circuits are formed by eliminating early-formed redundant synapses and stre...
Synapse elimination is crucial for precise neural circuit formation during postnatal development. We...
SummarySynapse elimination is crucial for precise neural circuit formation during postnatal developm...
Distinct populations of Purkinje cells (PCs) with unique molecular and connectivity features are at ...
Cerebellar cortex has an elaborate rostrocaudal organization comprised of numerous microzones. Purki...
In many parts of the vertebrate nervous system, synaptic connections are remodeled during early post...
Elimination of redundant synapses and strengthening of the surviving ones are crucial steps in the d...
AbstractWe studied how physiological properties of cerebellar climbing fiber (CF) to Purkinje cell (...
Pruning, the elimination of excess synapses is a phenomenon of fundamental importance for correct wi...
In the adult cerebellum, each Purkinje cell (PC) is innervated by a single climbing fiber (CF) in pr...
Correlated network activity plays a critical role in the development of many neural circuits. Purkin...
Climbing fibers (CFs) are thought to contribute to cerebellar plasticity and learning by triggering ...
AbstractMost of the cerebellar Purkinje cells (PCs) of an adult animal are innervated individually b...
Introduction The cerebellum is organized into functional regions each dedicated to process different...
The inferior olive of the medulla oblongata sends glutamatergic afferents to the cerebellum. In adul...
SummaryFunctional neural circuits are formed by eliminating early-formed redundant synapses and stre...
Synapse elimination is crucial for precise neural circuit formation during postnatal development. We...
SummarySynapse elimination is crucial for precise neural circuit formation during postnatal developm...
Distinct populations of Purkinje cells (PCs) with unique molecular and connectivity features are at ...
Cerebellar cortex has an elaborate rostrocaudal organization comprised of numerous microzones. Purki...
In many parts of the vertebrate nervous system, synaptic connections are remodeled during early post...
Elimination of redundant synapses and strengthening of the surviving ones are crucial steps in the d...
AbstractWe studied how physiological properties of cerebellar climbing fiber (CF) to Purkinje cell (...
Pruning, the elimination of excess synapses is a phenomenon of fundamental importance for correct wi...
In the adult cerebellum, each Purkinje cell (PC) is innervated by a single climbing fiber (CF) in pr...
Correlated network activity plays a critical role in the development of many neural circuits. Purkin...
Climbing fibers (CFs) are thought to contribute to cerebellar plasticity and learning by triggering ...
AbstractMost of the cerebellar Purkinje cells (PCs) of an adult animal are innervated individually b...
Introduction The cerebellum is organized into functional regions each dedicated to process different...