Frequency dependency of NMDA receptor‐dependent synaptic plasticity in the hippocampal CA1 region of freely behaving mice
Explore this paper's citation graph
Summary
This study shows for the first time that protocols that effectively elicit persistent synaptic plasticity in the slice preparation elicit distinctly different effects in the intact mouse brain.
- Type
- article
- Published
- 2012-12-01
- Cited by
- 44
- References
- 85
- OpenAlex
- https://openalex.org/W1988099187
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:32302655
Keywords
Long-term potentiation, Synaptic plasticity, Neuroscience, Hippocampal formation, Synaptic augmentation
References
- Two components of long-term potentiation induced by different patterns of afferent activation
- Hippocampal long-term depression is required for the consolidation of spatial memory
- Romeis - Mikroskopische Technik
- Differential maintenance and frequency-dependent tuning of LTP at hippocampal synapses of specific strains of inbred mice.
- Synaptic Plasticity
- Neurotrophin receptors TrkB.T1 and p75NTR cooperate in modulating both functional and structural plasticity in mature hippocampal neurons
- Synaptic plasticity and learning: selective impairment of learning rats and blockade of long-term potentiation in vivo by the N-methyl-D- aspartate receptor antagonist AP5
- Controlling the Ups and Downs of Synaptic Strength
- Long-term potentiation in awake mutant mice
- Induction and Experience-Dependent Consolidation of Stable Long-Term Potentiation Lasting Months in the Hippocampus
- Theory for the development of neuron selectivity: orientation specificity and binocular interaction in visual cortex
- Chemical induction of mGluR5- and protein synthesis--dependent long-term depression in hippocampal area CA1.
- Differential Effects of Long-Term Potentiation Evoked at the CA3–CA1 Synapse before, during, and after the Acquisition of Classical Eyeblink Conditioning in Behaving Mice
- Integration of foreign genes into the mammalian germ line: genetic engineering enters a new era
- Hippocampal long-term depression and long-term potentiation encode different aspects of novelty acquisition.
- Patterned stimulation at the theta frequency is optimal for the induction of hippocampal long-term potentiation.
- Stable hippocampal long-term potentiation elicited by 'theta' pattern stimulation.
- Lack of NMDA Receptor Subtype Selectivity for Hippocampal Long-Term Potentiation
- Bidirectional modification of CA1 synapses in the adult hippocampus in vivo
- Gene transfer into the mouse germ‐line
Cited by
- Hippocampal long‐term depression in freely behaving mice requires the activation of beta‐adrenergic receptors
- Activity-dependent plasticity of mouse hippocampal assemblies in vitro
- Dysbindin-1 loss compromises NMDAR-dependent synaptic plasticity and contextual fear conditioning
- Scaling Brain Size, Keeping Timing: Evolutionary Preservation of Brain Rhythms
- Ventral Tegmental Area Inactivation Suppresses the Expression of CA1 Long Term Potentiation in Anesthetized Rat
- Effect of the initial synaptic state on the probability to induce long-term potentiation and depression.
- NMDA receptor-dependent synaptic plasticity in dorsal and intermediate hippocampus exhibits distinct frequency-dependent profiles.
- Chiropractic management of a 24-year-old woman with idiopathic, intermittent right-sided hemiparesthesia.
- Evidence of Heterosynaptic LTD in the Human Nociceptive System: Superficial Skin Neuromodulation Using a Matrix Electrode Reduces Deep Pain Sensitivity
- D4 Receptor Activation Differentially Modulates Hippocampal Basal and Apical Dendritic Synapses in Freely Moving Mice.
- Role of inhibitory autophosphorylation of calcium/calmodulin-dependent kinase II (αCAMKII) in persistent (>24 h) hippocampal LTP and in LTD facilitated by novel object-place learning and recognition in mice.
- Brief environmental enrichment elicits metaplasticity of hippocampal synaptic potentiation in vivo
- The roles of STP and LTP in synaptic encoding
- Different NMDA receptor subtypes mediate induction of long‐term potentiation and two forms of short‐term potentiation at CA1 synapses in rat hippocampus in vitro
- Synaptic depression in the CA1 region of freely behaving mice is highly dependent on afferent stimulation parameters
- Interactions of Aging, Inflammation, and Neuronal Function: Synaptic Plasticity in Older Rodents is Altered Following a Peripheral Immune Challenge
- Brain Endothelial- and Epithelial-Specific Interferon Receptor Chain 1 Drives Virus-Induced Sickness Behavior and Cognitive Impairment.
- Metabotropic glutamate receptor, mGlu5, mediates enhancements of hippocampal long‐term potentiation after environmental enrichment in young and old mice
- Auditory cortical field coding long-lasting tonal offsets in mice
- Afferent Input Selects NMDA Receptor Subtype to Determine the Persistency of Hippocampal LTP in Freely Behaving Mice
Related papers
- PROGRESS IN STUDY OF SHORT-TERM SYNAPTIC PLASTICITY
- Fluctuation in background synaptic activity controls synaptic plasticity
- Cellular and molecular bases of memory: synaptic and neuronal plasticity.
- Numerical Simulation: Fluctuation in Background Synaptic Activity Regulates Synaptic Plasticity
- Metaplasticity: the plasticity of synaptic plasticity.
- Neurogranin and synaptic plasticity balance
- Calcium stores and synaptic plasticity.
- Hippocampal CA1 synaptic plasticity as a gamma transfer function.