Transcranial focused ultrasound stimulation of cortical and thalamic somatosensory areas in human.
Authors: Kim HC, Lee W, Weisholtz DS, Yoo SS
The effects of transcranial focused ultrasound (FUS) stimulation of the primary somatosensory cortex and its thalamic projection (i.e., ventral posterolateral nucleus) on the generation of electroencephalographic (EEG) responses were evaluated in healthy human volunteers. Stimulation of the unilateral somatosensory circuits corresponding to the non-dominant hand generated EEG evoked potentials across all participants; however, not all perceived stimulation-mediated tactile sensations of the hand. These FUS-evoked EEG potentials (FEP) were observed from both brain hemispheres and shared similarities with somatosensory evoked potentials (SSEP) from median nerve stimulation. Use of a 0.5 ms pulse duration (PD) sonication given at 70% duty cycle, compared to the use of 1 and 2 ms PD, elicited more distinctive FEP peak features from the hemisphere ipsilateral to sonication. Although several participants reported hearing tones associated with FUS stimulation, the observed FEP were not likely to be confounded by the auditory sensation based on a separate measurement of auditory evoked potentials (AEP) to tonal stimulation (mimicking the same repetition frequency as the FUS stimulation). Off-line changes in resting-state functional connectivity (FC) associated with thalamic stimulation revealed that the FUS stimulation enhanced connectivity in a network of sensorimotor and sensory integration areas, which lasted for at least more than an hour. Clinical neurological evaluations, EEG, and neuroanatomical MRI did not reveal any adverse or unintended effects of sonication, attesting its safety. These results suggest that FUS stimulation may induce long-term neuroplasticity in humans, indicating its neurotherapeutic potential for various neurological and neuropsychiatric conditions.
Introduction
Purpose
Transcranial ultrasound stimulation
Study Objective
To evaluate how transcranial focused ultrasound stimulation of the primary somatosensory cortex and its thalamic projection (VPL) affects EEG-evoked potentials, resting-state functional connectivity, and safety in healthy human volunteers across different pulse durations.
Animal model / Human subject
Human (Homo sapiens); strain: N/A; age: not reported; sex: not reported
Disease model
Healthy
Targeted brain region(s)
Thalamus
Outcomes and Safety
Summary of Outcomes
Transcranial focused ultrasound (targeting S1 and VPL) evoked EEG potentials in all participants, occasionally elicited tactile/auditory sensations, enhanced resting-state functional connectivity across sensorimotor and sensory-integration networks for at least ~1 hour, and showed no adverse clinical, EEG, or neuroanatomical findings. Of the pulsing schemes tested (pulse durations 0.5, 1, and 2 ms at 70% duty cycle), the 0.5 ms pulse duration produced the most distinctive FUS-evoked EEG potentials (with in situ I_sppa ≈ 3–4 W/cm2, I_spta ≈ 2–3 W/cm2).
Duration of biological effect
82.5 minutes
Safety-related matter
No adverse effects were observed: clinical neurological evaluations, EEG, and neuroanatomical MRI revealed no abnormalities and no cavitation events were detected, and no participants reported discomfort; several subjects did report faint auditory tones and occasional tactile sensations, but these were not painful or associated with objective findings.
Brain Region
Ultrasound Parameters
FUS Mode
pulsed
Pulse duration
0.5 ms, 1 ms, 2 ms
Focal Characteristics
Focal depth: None, Focal length: None, Aperture size: None
Treatment frequency
single
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