Modulation of neuronal excitability by intracellular calcium buffering: from spiking to bursting.
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Summary
Theoretical results show that a high calcium buffer concentration alters the characteristic regular firing of cerebellar granule cells and that a transition to various modes of oscillations occurs, including bursting, and suggest that cytosolic calcium buffering capacity can tightly modulate neuronal firing patterns leading to generation of complex patterns.
- Type
- article
- Published
- 2006-05-01
- Cited by
- 52
- References
- 63
- OpenAlex
- https://openalex.org/W2102509567
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:14335293
Keywords
Bursting, Calcium, Biophysics, Neuroscience, BAPTA
References
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- Activation of a Large‐conductance Ca2+‐Dependent K+ Channel by Stimulation of Glutamate Phosphoinositide‐coupled Receptors in Cultured Cerebellar Granule Cells
- Dendritic Control of Spontaneous Bursting in Cerebellar Purkinje Cells
- Calbindin distribution in male, female and lactating rat pituitary.
Cited by
- Developmental regulation of the membrane properties of central vestibular neurons by sensory vestibular information in the mouse
- Calbindin‐D28k and calretinin in chicken inner retina during postnatal development and neuroplasticity by dim red light
- Suppression of neurite outgrowth of primary cultured hippocampal neurons is involved in impairment of glutamate metabolism and NMDA receptor function caused by nanoparticulate TiO2.
- Enhanced calcium buffering in F344 rat cholinergic basal forebrain neurons is associated with age-related cognitive impairment.
- Long‐term regulation in calretinin staining in the rat inferior colliculus after unilateral auditory cortical ablation
- Full System Bifurcation Analysis of Endocrine Bursting Models
- Intrinsic voltage dynamics govern the diversity of spontaneous firing profiles in basal forebrain noncholinergic neurons.
- Intrinsic neuronal excitability: implications for health and disease
- Models of Calcium Dynamics in Cerebellar Granule Cells
- Calretinin: from a “simple” Ca2+ buffer to a multifunctional protein implicated in many biological processes
- Effects of Calretinin on Ca2+ Signals in Cerebellar Granule Cells: Implications of Cooperative Ca2+ Binding
- Network Excitability Dysfunction in Alzheimer's Disease: Insights from In Vitro and In Vivo Models
- Formalin Evokes Calcium Transients from the Endoplasmatic Reticulum
- A Crucial Role for cAMP and Protein Kinase A in D1 Dopamine Receptor Regulated Intracellular Calcium Transients
- Role of membrane potential in calcium signaling during rhythmic bursting in tritonia swim interneurons.
- Postinhibitory rebound neurons and networks are disrupted in retrovirus-induced spongiform neurodegeneration.
- Resolving the Fast Kinetics of Cooperative Binding: Ca2+ Buffering by Calretinin
- The use of transgenic mouse models to reveal the functions of Ca2+ buffer proteins in excitable cells.
- Control of Neuronal Excitability by Calcium Binding Proteins: A New Mathematical Model for Striatal Fast-Spiking Interneurons
- Cytoplasmic calcium buffering.
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