Calcium dependent plasticity applied to repetitive transcranial magnetic stimulation with a neural field model
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Publication:1705031
DOI10.1007/S10827-016-0607-7zbMath1382.92100OpenAlexW2418309087WikidataQ38858459 ScholiaQ38858459MaRDI QIDQ1705031
J. N. J. Reynolds, J. Shemmell, P. K. Fung, Marcus T. Wilson, Peter A. Robinson
Publication date: 14 March 2018
Published in: Journal of Computational Neuroscience (Search for Journal in Brave)
Full work available at URL: https://hdl.handle.net/10289/12885
modelingneural field theorytheta burst stimulationtranscranial magnetic stimulationcalcium dependent plasticity
Related Items (1)
Cites Work
- A continuum theory of electro-cortical activity
- Numerical modelling of plasticity induced by transcranial magnetic stimulation
- Neural field theory of plasticity in the cerebral cortex
- Neural field theory of synaptic plasticity
- Converging evidence for a simplified biophysical model of synaptic plasticity
- Neural field theory of calcium dependent plasticity with applications to transcranial magnetic stimulation
- A biophysical basis for the inter-spike interaction of spike-timing-dependent plasticity
- A derivation of a macroscopic field theory of the brain from the quasi-microscopic neural dynamics
- Neural field theory of synaptic metaplasticity with applications to theta burst stimulation
- Relating STDP to BCM
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