Evidence map›Paper›PMID 41406296›Full record

ArticleIEEE transactions on neural systems and rehabilitation engineering : a publication of the IEEE Engineering in Medicine and Biology Society2026

tACS of the Cerebellum and the Motor Cortex Entrains the Spiking Activity of the Cells in Motor Thalamus in a Frequency Dependent Manner.

Amir Roshani Talesh, Qi Kang, Eric J Lang, Mesut Sahin

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Article in IEEE transactions on neural systems and rehabilitation engineering : a publication of the IEEE Engineering in Medicine and Biology Society, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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1 · What the graph read from it

What it found

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2 · The registry

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3 · Its place in the literature

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4 · The record

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5 · Who and what money

Authors and funding

4 authors.

Amir Roshani Talesh
Qi Kang
Eric J Lang
Mesut Sahin

Funding

Modulation of Cerebellar Activity by Electrical and Focused Ultrasound StimulationRF1NS122741 · NINDS · NEW JERSEY INSTITUTE OF TECHNOLOGY · PI LANG, ERIC J, ORALKAN, OMER · 2022 to 2022
$2.9M
Modulation of Cerebellar Activity by Electrical and Focused Ultrasound StimulationR01NS122741 · NINDS · NEW JERSEY INSTITUTE OF TECHNOLOGY · PI ERIC J LANG, Omer Oralkan · 2025 to 2026
$1.6M
NINDS NIH HHS R01 NS122741NINDS NIH HHS RF1 NS122741
6 · The paper itself

Abstract

Transcranial AC stimulation (tACS) of the cerebellum can entrain spiking activity in the Purkinje cells (PCs) of the cerebellar cortex and, through their projections, the cells in the cerebellar nuclei (CN). In this paper, we investigated if the cells in the motor thalamus (Mthal) can also be modulated (i.e. spikes entrained) via the CN-Mthal projections in rodents. A total of 82 thalamic cells were found, presumably in the Mthal by their stereotaxic coordinates, that were modulated by tACS of the cerebellum. Out of the 346 cells isolated, the thalamic cells with shorter action potentials and regular firing patterns had a higher probability of modulation by cerebellar stimulation than the cells with wider action potentials. The modulation level had a tuning curve with a maximum around 100-200 Hz. Spike histograms over the stimulation cycle transitioned between unimodal and bimodal distributions depending on the frequency. Most cells had a unimodal distribution at low frequencies, a bimodal distribution for frequencies between 80-125 Hz, and then a unimodal one for frequencies above 150 Hz. In addition, tACS of the motor cortex (MC) was also tested in a subset of thalamic cells. Unlike cerebellar stimulation, modulation levels peaked at two distinct frequencies, presumably due to entrainment through multiple MC-Mthal pathways with different preferred frequencies. The results demonstrate the feasibility of modulating a deep brain structure such as the thalamus through multi-synaptic pathways by stimulation of the cerebellar cortex (and the motor cortex) using a non-invasive neuromodulation method.

Indexed as

Action PotentialsCerebellumMotor CortexThalamusTranscranial Direct Current StimulationAnimalsMaleNeural PathwaysPurkinje CellsRats

Identifiers

PMID41406296
PMCPMC12861036

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the Socratic graph.