Literature DB >> 10995860

Short-term synaptic plasticity contributes to the temporal filtering of electrosensory information.

E S Fortune1, G J Rose.   

Abstract

Short-term synaptic depression and facilitation often are elicited by different temporal patterns of activity. Short-term plasticity may contribute, therefore, to temporal filtering by impeding synaptic transmission for some temporal patterns of activity and facilitating transmission for other patterns. We examined this hypothesis by investigating whether short-term plasticity contributes to the temporal filtering properties of midbrain electrosensory neurons. Postsynaptic potentials were recorded in response to sensory stimuli and to direct stimulation of afferents, in vivo. Stimulating afferents with pairs of pulses at a rate of 20 pairs/sec ["tetanus (20 Hz)"] induced PSP depression. This PSP depression was similar to that observed for electrosensory stimuli of the same temporal frequency. Analysis of PSPs elicited by a pair of pulses that preceded versus followed the tetanus revealed that PSP depression was caused by synaptic depression, not by a loss of facilitation. Behavioral studies indicate that fish can detect slow changes in signal amplitude (slow AM) in backgrounds of fast fluctuations. Correspondingly, midbrain neurons respond well to slow AM even in the presence of fast AM. In many neurons, facilitation enhanced responses to trains (8-10 pulses; 100 Hz) that represented activity patterns elicited by slow AM, despite induction of synaptic depression by a tetanus (20 Hz). The interplay between synaptic depression and facilitation, therefore, can act as a filter of temporal information. Some neurons that showed little facilitation nonetheless responded to low temporal-frequency information after induction of depression by fast information; this likely results from the convergence of inputs with different temporal filtering properties.

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Year:  2000        PMID: 10995860      PMCID: PMC6772817     

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  29 in total

Review 1.  Calcium- and activity-dependent synaptic plasticity.

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Review 2.  Short-term synaptic plasticity.

Authors:  R S Zucker
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3.  Modulation of calcium-dependent postsynaptic depression contributes to an adaptive sensory filter.

Authors:  J Bastian
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4.  Redistribution of synaptic efficacy between neocortical pyramidal neurons.

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Review 5.  Synaptic depression: a dynamic regulator of synaptic communication with varied functional roles.

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Review 6.  Dynamic synapses in the cortex.

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7.  Multiple electrosensory maps in the medulla of weakly electric gymnotiform fish. I. Physiological differences.

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10.  Synaptic depression and the temporal response characteristics of V1 cells.

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  40 in total

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