Literature DB >> 28104085

Direct Current Stimulation Modulates LTP and LTD: Activity Dependence and Dendritic Effects.

Greg Kronberg1, Morgan Bridi2, Ted Abel3, Marom Bikson4, Lucas C Parra4.   

Abstract

BACKGROUND: Transcranial direct current stimulation (tDCS) has been reported to improve various forms of learning in humans. Stimulation is often applied during training, producing lasting enhancements that are specific to the learned task. These learning effects are thought to be mediated by altered synaptic plasticity. However, the effects of DCS during the induction of endogenous synaptic plasticity remain largely unexplored. OBJECTIVE/HYPOTHESIS: Here we are interested in the effects of DCS applied during synaptic plasticity induction.
METHODS: To model endogenous plasticity we induced long-term potentiation (LTP) and depression (LTD) at Schaffer collateral synapses in CA1 of rat hippocampal slices. Anodal and cathodal DCS at 20 V/m were applied throughout plasticity induction in both apical and basal dendritic compartments.
RESULTS: When DCS was paired with concurrent plasticity induction, the resulting plasticity was biased towards potentiation, such that LTP was enhanced and LTD was reduced. Remarkably, both anodal and cathodal stimulation can produce this bias, depending on the dendritic location and type of plasticity induction. Cathodal DCS enhanced LTP in apical dendrites while anodal DCS enhanced LTP in basal dendrites. Both anodal and cathodal DCS reduced LTD in apical dendrites. DCS did not affect synapses that were weakly active or when NMDA receptors were blocked.
CONCLUSIONS: These results highlight the role of DCS as a modulator, rather than inducer of synaptic plasticity, as well as the dependence of DCS effects on the spatial and temporal properties of endogenous synaptic activity. The relevance of the present results to human tDCS should be validated in future studies.
Copyright © 2016 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Activity dependent; BCM theory; Dendrite; Membrane polarization; NMDA receptor; Synaptic plasticity; tDCS

Mesh:

Year:  2016        PMID: 28104085      PMCID: PMC5260488          DOI: 10.1016/j.brs.2016.10.001

Source DB:  PubMed          Journal:  Brain Stimul        ISSN: 1876-4754            Impact factor:   8.955


  72 in total

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Review 4.  Therapeutic effects of non-invasive brain stimulation with direct currents (tDCS) in neuropsychiatric diseases.

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5.  All-or-none potentiation at CA3-CA1 synapses.

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6.  Induction of late LTP-like plasticity in the human motor cortex by repeated non-invasive brain stimulation.

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9.  Modulating Hippocampal Plasticity with In Vivo Brain Stimulation.

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  76 in total

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4.  Behavioral and neurological effects of tDCS on speech motor recovery: A single-subject intervention study.

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Review 6.  Incomplete evidence that increasing current intensity of tDCS boosts outcomes.

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Journal:  Brain Stimul       Date:  2017-12-13       Impact factor: 8.955

7.  Polarity- and Intensity-Independent Modulation of Timing During Delay Eyeblink Conditioning Using Cerebellar Transcranial Direct Current Stimulation.

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Review 8.  Device-Based Modulation of Neurocircuits as a Therapeutic for Psychiatric Disorders.

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9.  Exploring new transcranial electrical stimulation strategies to modulate brain function in animal models.

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10.  Effects of tDCS on spontaneous spike activity in a healthy ambulatory rat model.

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Journal:  Brain Stimul       Date:  2020-09-11       Impact factor: 8.955

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