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Transcranial focused ultrasound modulates intrinsic and evoked EEG dynamics.

Authors: Mueller J, Legon W, Opitz A, Sato TF, Tyler WJ

The integration of EEG recordings and transcranial neuromodulation has provided a useful construct for noninvasively investigating the modification of human brain circuit activity. Recent evidence has demonstrated that focused ultrasound can be targeted through the human skull to affect the amplitude of somatosensory evoked potentials and its associated spectral content. The present study tests whether focused ultrasound transmitted through the human skull and targeted to somatosensory cortex can affect the phase and phase rate of cortical oscillatory dynamics. A computational model was developed to gain insight regarding the insertion behavior of ultrasound induced pressure waves in the human head. The instantaneous phase and phase rate of EEG recordings before, during, and after transmission of transcranial focused ultrasound (tFUS) to human somatosensory cortex were examined to explore its effects on phase dynamics. Computational modeling results show the skull effectively reinforces the focusing of tFUS due to curvature of material interfaces. Neurophysiological recordings show that tFUS alters the phase distribution of intrinsic brain activity for beta frequencies, but not gamma. This modulation was accompanied by a change in phase rate of both beta and gamma frequencies. Additionally, tFUS modulated phase distributions in the beta band of early sensory-evoked activity but did not affect late sensory-evoked activity, lending support to the spatial specificity of tFUS for neuromodulation. This spatial specificity was confirmed through an additional experiment where the ultrasound transducer was moved 1 cm laterally from the original cortical target. Focused ultrasonic energy can alter EEG oscillatory dynamics through local mechanical perturbation of discrete cortical circuits.

Introduction

Purpose Transcranial ultrasound stimulation
Study Objective To determine whether transcranial focused ultrasound can modulate intrinsic and evoked EEG dynamics.
Animal model / Human subject None.
Disease model healthy

Outcomes and Safety

Summary of Outcomes Transcranial focused ultrasound alters intrinsic and evoked EEG dynamics, demonstrating that noninvasive ultrasound can modulate neural activity patterns.
Safety-related matter No safety concerns or adverse effects were mentioned in the provided text.

Brain Region

Visualization unavailable

Ultrasound Parameters

FUS Frequency 0.5 MHz
FUS Intensity 23.87 W/cm^2 (ISPPA)
FUS Pressure 0.80 MPa
FUS Mode pulsed
Pulse duration 360 μs
Treatment frequency single

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