Dynamical basis of irregular spiking in NMDA-driven prefrontal cortex neurons.
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Summary
It is reported that highly irregular firing can be induced through a combination of NMDA- and dopamine D1 receptor agonists applied to adult PFC neurons in vitro, and the phenomena observed in vitro could be reproduced in purely deterministic biophysical model neurons.
- Type
- article
- Published
- 2007-04-01
- Cited by
- 75
- References
- 116
- OpenAlex
- https://openalex.org/W16740581
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:3214815
Keywords
Humanities, Art
References
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Cited by
- A modeling study of the role of tonic vs. phasic dopamine input to the prefrontal cortex
- Neurobiology of Schizophrenia Onset
- Information Processing in Single Cells and Small Networks: Insights from Compartmental Models
- Persistent neural activity in the prefrontal cortex: a mechanism by which BDNF regulates working memory?
- Dendritic nonlinearities enable PFC microcircuits to serve as predictive modules of persistent activity
- Control of bursting behavior in neurons by autaptic modulation
- Relating Neuronal Firing Patterns to Functional Differentiation of Cerebral Cortex
- Encoding of Spatio-Temporal Input Characteristics by a CA1 Pyramidal Neuron Model
- Dopamine-Signaled Reward Predictions Generated by Competitive Excitation and Inhibition in a Spiking Neural Network Model
- Coupling of mesoscopic brain oscillations: recent advances in analytical and theoretical perspectives.
- Spatial-temporal dynamics of chaotic behavior in cultured hippocampal networks.
- The dual-state theory of prefrontal cortex dopamine function with relevance to catechol-o-methyltransferase genotypes and schizophrenia.
- Arc Regulates Experience-Dependent Persistent Firing Patterns in Frontal Cortex
- The role of tonic and phasic dopamine for long-term synaptic plasticity in the prefrontal cortex: a computational model.
- Balanced Excitatory and Inhibitory Inputs to Cortical Neurons Decouple Firing Irregularity from Rate Modulations
- Predictive Features of Persistent Activity Emergence in Regular Spiking and Intrinsic Bursting Model Neurons
- Implications of synaptic biophysics for recurrent network dynamics and active memory
- Analytical approximations of the firing rate of an adaptive exponential integrate-and-fire neuron in the presence of synaptic noise
- Memory retrieval in response to partial cues requires NMDA receptor-dependent neurotransmission in the medial prefrontal cortex.
- Searching for Autocoherence in the Cortical Network with a Time-Frequency Analysis of the Local Field Potential
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