High speed two-photon imaging of calcium dynamics in dendritic spines: consequences for spine calcium kinetics and buffer capacity.
about
Visualization of fast calcium oscillations in the parafascicular nucleusSynaptic activation and membrane potential changes modulate the frequency of spontaneous elementary Ca2+ release events in the dendrites of pyramidal neuronsLabel-free live brain imaging and targeted patching with third-harmonic generation microscopy.Developmental profile of localized spontaneous Ca(2+) release events in the dendrites of rat hippocampal pyramidal neuronsInferring Neuronal Dynamics from Calcium Imaging Data Using Biophysical Models and Bayesian Inference.The fragile X mental retardation protein developmentally regulates the strength and fidelity of calcium signaling in Drosophila mushroom body neuronsComparative analysis of calcium spikes upon activation of serotonin(1A) and purinergic receptors.Calmodulin as a direct detector of Ca2+ signals.Presynaptic ionotropic receptors controlling and modulating the rules for spike timing-dependent plasticity.Wavelet transform-based de-noising for two-photon imaging of synaptic Ca2+ transients.Spike inference from calcium imaging using sequential Monte Carlo methods.Spatiotemporal properties of high-speed calcium oscillations in the pedunculopontine nucleus.Ca(2+) sensor proteins in dendritic spines: a race for Ca(2+).Buffer mobility and the regulation of neuronal calcium domains.Correlated variations in the parameters that regulate dendritic calcium signaling in mouse retinal ganglion cells.Postsynaptic signal transduction models for long-term potentiation and depression.Activity-dependent gating of calcium spikes by A-type K+ channels controls climbing fiber signaling in Purkinje cell dendrites.The diffusional properties of dendrites depend on the density of dendritic spinesHebbian crosstalk prevents nonlinear unsupervised learning.Modeling spontaneous activity across an excitable epithelium: Support for a coordination scenario of early neural evolution.Human synapses show a wide temporal window for spike-timing-dependent plasticity.The dynamics of excitatory synapse formation on dendritic spines.Dendritic small conductance calcium-activated potassium channels activated by action potentials suppress EPSPs and gate spike-timing dependent synaptic plasticity.Quantitative interactions between the A-type K+ current and inositol trisphosphate receptors regulate intraneuronal Ca2+ waves and synaptic plasticity.Calcium buffering in rodent olfactory bulb granule cells and mitral cells.
P2860
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P2860
High speed two-photon imaging of calcium dynamics in dendritic spines: consequences for spine calcium kinetics and buffer capacity.
description
2007 nî lūn-bûn
@nan
2007 թուականի Հոկտեմբերին հրատարակուած գիտական յօդուած
@hyw
2007 թվականի հոտեմբերին հրատարակված գիտական հոդված
@hy
2007年の論文
@ja
2007年論文
@yue
2007年論文
@zh-hant
2007年論文
@zh-hk
2007年論文
@zh-mo
2007年論文
@zh-tw
2007年论文
@wuu
name
High speed two-photon imaging ...... kinetics and buffer capacity.
@ast
High speed two-photon imaging ...... kinetics and buffer capacity.
@en
High speed two-photon imaging ...... kinetics and buffer capacity.
@nl
type
label
High speed two-photon imaging ...... kinetics and buffer capacity.
@ast
High speed two-photon imaging ...... kinetics and buffer capacity.
@en
High speed two-photon imaging ...... kinetics and buffer capacity.
@nl
prefLabel
High speed two-photon imaging ...... kinetics and buffer capacity.
@ast
High speed two-photon imaging ...... kinetics and buffer capacity.
@en
High speed two-photon imaging ...... kinetics and buffer capacity.
@nl
P2860
P50
P1433
P1476
High speed two-photon imaging ...... m kinetics and buffer capacity
@en
P2093
L Niels Cornelisse
Rafael Yuste
P2860
P356
10.1371/JOURNAL.PONE.0001073
P407
P577
2007-10-24T00:00:00Z