The mechanisms governing the kinetics of climbing fibre-mediated Ca2+ transients in spiny dendrites of cerebellar Purkinje cells (PCs) were quantified with high-resolution confocal Ca2+ imaging. Ca2+ dynamics in parvalbumin (PV-/-) and parvalbumin/calbindin D-28k null-mutant (PV/CB-/-) mice were compared with responses in wild-type (WT) animals. In the WT, Ca2+ transients in dendritic shafts were characterised by double exponential decay kinetics that were not due to buffered Ca2+ diffusion or saturation of the indicator dye. Ca2+ transients in PV-/- PCs reached the same peak amplitude as in the WT but the biphasic nature of the decay was less pronounced, an effect that could be attributed to PV's slow binding kinetics. In contrast, peak am...
In the adult cerebellum, each Purkinje cell (PC) is innervated by a single climbing fiber (CF) in pr...
Rapid calcium concentration changes in postsynaptic structures are crucial for synaptic plasticity. ...
Rapid calcium concentration changes in postsynaptic structures are crucial for synaptic plasticity. ...
Ca2+-binding proteins (CaBPs) represent key factors for the modulation of cellular Ca2+ dynamics. Es...
AbstractCa2+-binding proteins (CaBPs) represent key factors for the modulation of cellular Ca2+ dyna...
Purkinje cells (PC) control spike timing of neighboring PC by their recurrent axon collaterals. Thes...
Abstract. The calcium ion (Ca2B) serves as an important cellular messenger with spatio-temporally hi...
# The Author(s) 2010. This article is published with open access at Springerlink.com Abstract Intrac...
Purkinje cells are the principal neurons of the cerebellar cortex and have an extensive and elaborat...
The rocker mice are hereditary ataxic mutants, which carry a point mutation in the geneencoding the ...
Purkinje cells are the principal neurons of the cerebellar cortex and have an extensive and elaborat...
Calcium (Ca(2+)) is a second messenger assumed to control changes in synaptic strength in the form o...
Long-term depression (LTD) of Purkinje cell-parallel fiber synaptic transmission is a critical deter...
In the cerebellum, the parallel fiber-Purkinje cell synapse can undergo long-term synaptic plasticit...
The Ca(2+)-binding proteins parvalbumin (PV) and calbindin D-28k (CB) are key players in the intrace...
In the adult cerebellum, each Purkinje cell (PC) is innervated by a single climbing fiber (CF) in pr...
Rapid calcium concentration changes in postsynaptic structures are crucial for synaptic plasticity. ...
Rapid calcium concentration changes in postsynaptic structures are crucial for synaptic plasticity. ...
Ca2+-binding proteins (CaBPs) represent key factors for the modulation of cellular Ca2+ dynamics. Es...
AbstractCa2+-binding proteins (CaBPs) represent key factors for the modulation of cellular Ca2+ dyna...
Purkinje cells (PC) control spike timing of neighboring PC by their recurrent axon collaterals. Thes...
Abstract. The calcium ion (Ca2B) serves as an important cellular messenger with spatio-temporally hi...
# The Author(s) 2010. This article is published with open access at Springerlink.com Abstract Intrac...
Purkinje cells are the principal neurons of the cerebellar cortex and have an extensive and elaborat...
The rocker mice are hereditary ataxic mutants, which carry a point mutation in the geneencoding the ...
Purkinje cells are the principal neurons of the cerebellar cortex and have an extensive and elaborat...
Calcium (Ca(2+)) is a second messenger assumed to control changes in synaptic strength in the form o...
Long-term depression (LTD) of Purkinje cell-parallel fiber synaptic transmission is a critical deter...
In the cerebellum, the parallel fiber-Purkinje cell synapse can undergo long-term synaptic plasticit...
The Ca(2+)-binding proteins parvalbumin (PV) and calbindin D-28k (CB) are key players in the intrace...
In the adult cerebellum, each Purkinje cell (PC) is innervated by a single climbing fiber (CF) in pr...
Rapid calcium concentration changes in postsynaptic structures are crucial for synaptic plasticity. ...
Rapid calcium concentration changes in postsynaptic structures are crucial for synaptic plasticity. ...