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Numerical modelling of plasticity induced by transcranial magnetic stimulation

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Publication:1704807
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DOI10.1007/s10827-013-0485-1zbMath1382.92101OpenAlexW1975859941WikidataQ48410414 ScholiaQ48410414MaRDI QIDQ1704807

P. W. Brownjohn, J. Shemmell, J. N. J. Reynolds, Marcus T. Wilson, Dominic P. M. Goodwin

Publication date: 13 March 2018

Published in: Journal of Computational Neuroscience (Search for Journal in Brave)

Full work available at URL: http://hdl.handle.net/10289/8062


zbMATH Keywords

modellingplasticityneural field theorytheta burst stimulationtranscranial magnetic stimulation


Mathematics Subject Classification ID

Neural biology (92C20) Biophysics (92C05)


Related Items (1)

Calcium dependent plasticity applied to repetitive transcranial magnetic stimulation with a neural field model



Cites Work

  • Unnamed Item
  • The brain wave equation: A model for the EEG
  • Neural field theory of plasticity in the cerebral cortex
  • Neural field theory of synaptic plasticity
  • Neural field theory of calcium dependent plasticity with applications to transcranial magnetic stimulation
  • Spiking Neuron Models


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