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A revised calcium-dependent model of transcranial magnetic theta-burst stimulation.

Publication ,  Journal Article
Ma, K; Rothwell, JC; Goetz, SM
Published in: Clin Neurophysiol
December 2022

OBJECTIVE: Calcium dependency is presently an essential assumption in modelling the neuromodulatory effects of transcranial magnetic stimulation. Y.Z.Huang et al.developed the first neuromodulation model to explain the bidirectional effects of theta-burst stimulation (TBS) based on the postsynaptic intracellular calcium concentration elevation. However, we discover that the published computer code is not consistent with the model formulation, neither do the parameters and derived plots consequently match the formulations. Here we intend to fix the computer code and re-calibrate the model. METHODS: We corrected the affected difference equations and re-calibrated the revised model with experimental data using non-convex optimisation based on a L2 penalty. RESULTS: The revised model outperforms the initial model in characterising the relative motor-evoked potential levels of TBS-induced after-effects in various conditions. CONCLUSIONS: We corrected the inconsistencies in the previous model and computer code and provided a complete calibration to support the research that is based on it. SIGNIFICANCE: This work improves the accuracy and secures the scope of the model, which is necessary to retain a rich body of research resulting from the model. Furthermore, this model provides both a quantitative model for several parameters of TBS and a basic model foundation for future refinement.

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Published In

Clin Neurophysiol

DOI

EISSN

1872-8952

Publication Date

December 2022

Volume

144

Start / End Page

41 / 49

Location

Netherlands

Related Subject Headings

  • Transcranial Magnetic Stimulation
  • Theta Rhythm
  • Neurology & Neurosurgery
  • Motor Cortex
  • Magnetic Phenomena
  • Humans
  • Calcium
  • 3209 Neurosciences
  • 17 Psychology and Cognitive Sciences
  • 11 Medical and Health Sciences
 

Citation

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Ma, K., Rothwell, J. C., & Goetz, S. M. (2022). A revised calcium-dependent model of transcranial magnetic theta-burst stimulation. Clin Neurophysiol, 144, 41–49. https://doi.org/10.1016/j.clinph.2022.09.009
Ma, Ke, John C. Rothwell, and Stephan M. Goetz. “A revised calcium-dependent model of transcranial magnetic theta-burst stimulation.Clin Neurophysiol 144 (December 2022): 41–49. https://doi.org/10.1016/j.clinph.2022.09.009.
Ma K, Rothwell JC, Goetz SM. A revised calcium-dependent model of transcranial magnetic theta-burst stimulation. Clin Neurophysiol. 2022 Dec;144:41–9.
Ma, Ke, et al. “A revised calcium-dependent model of transcranial magnetic theta-burst stimulation.Clin Neurophysiol, vol. 144, Dec. 2022, pp. 41–49. Pubmed, doi:10.1016/j.clinph.2022.09.009.
Ma K, Rothwell JC, Goetz SM. A revised calcium-dependent model of transcranial magnetic theta-burst stimulation. Clin Neurophysiol. 2022 Dec;144:41–49.
Journal cover image

Published In

Clin Neurophysiol

DOI

EISSN

1872-8952

Publication Date

December 2022

Volume

144

Start / End Page

41 / 49

Location

Netherlands

Related Subject Headings

  • Transcranial Magnetic Stimulation
  • Theta Rhythm
  • Neurology & Neurosurgery
  • Motor Cortex
  • Magnetic Phenomena
  • Humans
  • Calcium
  • 3209 Neurosciences
  • 17 Psychology and Cognitive Sciences
  • 11 Medical and Health Sciences