Transcranial Focused Ultrasound Neuromodulation of Voluntary Movement-Related Cortical Activity in Humans.
Authors: Yu K, Liu C, Niu X, He B
Transcranial focused ultrasound (tFUS) is an emerging non-invasive brain stimulation tool for safely and reversibly modulating brain circuits. The effectiveness of tFUS on human brain has been demonstrated, but how tFUS influences the human voluntary motor processing in the brain remains unclear. We apply low-intensity tFUS to modulate the movement-related cortical potential (MRCP) originating from human subjects practicing a voluntary foot tapping task. 64-channel electroencephalograph (EEG) is recorded concurrently and further used to reconstruct the brain source activity specifically at the primary leg motor cortical area using the electrophysiological source imaging (ESI). The ESI illustrates the ultrasound modulated MRCP source dynamics with high spatiotemporal resolutions. The MRCP source is imaged and its source profile is further evaluated for assessing the tFUS neuromodulatory effects on the voluntary MRCP. Moreover, the effect of ultrasound pulse repetition frequency (UPRF) is further assessed in modulating the MRCP. The ESI results show that tFUS significantly increases the MRCP source profile amplitude (MSPA) comparing to a sham ultrasound condition, and further, a high UPRF enhances the MSPA more than a low UPRF does. The present results demonstrate the neuromodulatory effects of the low-intensity tFUS on enhancing the human voluntary movement-related cortical activities evidenced through the ESI. This work provides the first evidence of tFUS enhancing the human endogenous motor cortical activities through excitatory modulation.
Introduction
Purpose
Transcranial ultrasound stimulation
Study Objective
To determine whether low-intensity transcranial focused ultrasound modulates human voluntary movement-related cortical potentials and whether ultrasound pulse repetition frequency influences this modulation, using EEG-based electrophysiological source imaging during a foot-tapping task.
Animal model / Human subject
Human (Homo sapiens); strain: N/A; age: None; sex: None
Disease model
healthy
MRI or image guidance method
None (no MRI/image guidance or stereotactic method reported)
Targeted brain region(s)
Primary Leg Motor Cortical Area
Cargo name and characteristics
Low-intensity transcranial focused ultrasound (tFUS) — a noninvasive acoustic neuromodulation modality applied to the primary leg motor cortex to modulate movement-related cortical potentials; experimental parameter varied: ultrasound pulse repetition frequency (UPRF; low vs. high); delivered during voluntary foot-tapping with concurrent 64-channel EEG/ESI monitoring.
Route of administration
Transcranial focused ultrasound (non-invasive application through the skull/scalp)
Outcomes and Safety
Summary of Outcomes
Low-intensity transcranial focused ultrasound (tFUS) enhances human voluntary movement-related cortical activity by increasing MRCP source amplitude compared to sham, with higher ultrasound pulse repetition frequency producing greater enhancement.
Safety-related matter
The paper describes tFUS as a "safe and reversible" non-invasive brain stimulation tool and does not report any adverse effects.
Brain Region
Ultrasound Parameters
FUS Mode
pulsed
Treatment frequency
single
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