Evidence map›Paper›PMID 42362146›Full record

ArticleBrain stimulation

Cell-type-specific bidirectional modulation of the cortico-thalamo-cortical sensory pathway by transcranial focused ultrasound (tFUS).

Huan Gao, Sandhya Ramachandran, Keunhyung Lee, Annabel Frake, Mary M Torregrossa, Bin He

Abstract read
In one paragraph

Article in Brain stimulation. 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

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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

6 authors.

Huan GaoDepartment of Biomedical Engineering, Carnegie Mellon University, USA.
Sandhya RamachandranDepartment of Biomedical Engineering, Carnegie Mellon University, USA.
Keunhyung LeeDepartment of Biomedical Engineering, Carnegie Mellon University, USA.
Annabel FrakeDepartment of Biomedical Engineering, Carnegie Mellon University, USA.
Mary M TorregrossaDepartment of Psychiatry, Center for Neuroscience, University of Pittsburgh, USA.
Bin HeDepartment of Biomedical Engineering, Carnegie Mellon University, USA; Neuroscience Institute, Carnegie Mellon University, USA. Electronic address: bhe1@andrew.cmu.edu.

Funding

Electrophysiology-Compatible Wearable Transcranial Focused Ultrasound Neuromodulation Array ProbesRF1NS131069 · NINDS · CARNEGIE-MELLON UNIVERSITY · PI HE, BIN · 2023 to 2023
$3.6M
Characterization of in vivo neuronal and inter-neuronal responses to transcranial focused ultrasoundR01NS124564 · NINDS · CARNEGIE-MELLON UNIVERSITY · PI HE, BIN · 2021 to 2021
$2.0M
Characterization of in vivo neuronal and inter-neuronal responses to transcranial focused ultrasoundRF1NS124564 · NINDS · CARNEGIE-MELLON UNIVERSITY · PI HE, BIN · 2025 to 2025
$571k
NINDS NIH HHS R01 NS124564NINDS NIH HHS RF1 NS124564NINDS NIH HHS RF1 NS131069
6 · The paper itself

Abstract

introductionTranscranial focused ultrasound (tFUS) can noninvasively modulate sensory pathways, but the cell-type-specific mechanisms underlying excitatory or inhibitory effects remain unclear. Here, we investigate how tFUS applied to the somatosensory cortex (S1) influences S1 and posterior medial thalamic nucleus (POm) responses to hind paw vibration-tactile stimulation and which neuronal populations mediate these effects.

methodsVibration-tactile stimulation evoked potentials (TEPs) and multi-unit activity (MUA) in S1 and POm were recorded from male rats. Optogenetic tagging was used to identify S1 CaMKII-positive, PV-positive, and SST-positive neurons, while waveform features were used to classify putative excitatory (i.e., regular-spiking units - RSUs) and inhibitory neurons (i.e., fast-spiking units - FSUs) in POm.

resultsWe found that only S1 CaMKII-positive neurons and POm RSUs responded robustly to tactile stimulation. When tFUS was applied to S1, high pulse repetition frequency (PRF), high duty cycle, and high-pressure stimulation (etFUS) produced excitatory modulation of the sensory pathway, whereas low PRF, low duty cycle, and low-pressure stimulation (itFUS) induced inhibitory effects. Further analyses suggested that excitatory modulation may involve activation of S1 CaMKII-positive neurons, while the inhibitory effect may be associated with their deactivation.

conclusionsThese findings demonstrate that tFUS exerts bidirectional, parameter-dependent modulation of a sensory pathway and highlight the critical role of CaMKII-positive neurons in mediating these effects. This study provides mechanistic insight into cell-type-specific neuromodulation by tFUS, particularly in bidirectional modulation of a sensory pathway, and informs the optimization of stimulation parameters for targeted therapeutic interventions.

Indexed as

NeuronsPosterior Thalamic NucleiSomatosensory CortexUltrasonic WavesAnimalsCalcium-Calmodulin-Dependent Protein Kinase Type 2Evoked Potentials, SomatosensoryMaleNeural PathwaysRatsRats, Sprague-DawleyCalcium-Calmodulin-Dependent Protein Kinase Type 2Cell-type selectivityFocused ultrasound stimulation (tFUS)NeuromodulationSensory pathwayTactile stimulation

Identifiers

PMID42362146
PMCPMC13401079

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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 OpenQuestion graph.