Journal of Neuroscience · 2000 · 255 citations · 39 references
Synaptic TransmissionRat CerebellumNeurotransmissionStructural PlasticityCellular NeurobiologySynaptic SignalingSocial SciencesNeurodynamicsSynaptic ActivitySynaptic NeuroscienceSynaptic PhysiologyNeurologyIntrinsic ExcitabilityHigh-frequency StimulationNervous SystemSynaptic PlasticityNeurophysiologyCellular NeurosciencePhysiologyNeural CircuitsLong-term PotentiationNeuroscienceSynaptic DysfunctionCentral Nervous SystemMedicine
Synaptic activity can induce persistent modifications in the way a neuron reacts to subsequent inputs by changing either synaptic efficacy or intrinsic excitability. After high-frequency synaptic stimulation, long-term potentiation (LTP) of synaptic efficacy is commonly observed at hippocampal synapses (Bliss and Collingridge, 1993), and potentiation of intrinsic excitability has recently been reported in cerebellar deep nuclear neurons (Aizenmann and Linden, 2000). However, the potential coexistence of these two aspects of plasticity remained unclear. In this paper we have investigated the effect of high-frequency stimulation on synaptic transmission and intrinsic excitability at the mossy fiber-granule cell relay of the cerebellum. High-frequency stimulation, in addition to increasing synaptic conductance (D'Angelo et al., 1999), increased granule cell input resistance and decreased spike threshold. These changes depended on postsynaptic depolarization and NMDA receptor activation and were prevented by inhibitory synaptic activity. Potentiation of intrinsic excitability was induced by relatively weaker inputs than potentiation of synaptic efficacy, whereas with stronger inputs the two aspect of potentiation combined to enhance EPSPs and spike generation. Potentiation of intrinsic excitability may extend the computational capability of the cerebellar mossy fiber-granule cell relay.
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Regulation of Synaptic Efficacy by Coincidence of Postsynaptic APs and EPSPs
Henry Markram, Joachim Lübke, Michael Frotscher et al. · Science · 1997 · 3.8K citations · Full text
David Marr · The Journal of Physiology · 1969 · 3.3K citations · Full text
Motor Learning, Motor Skill, Developmental Cognitive Neuroscience +21