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Different Modes of Low-Frequency Focused Ultrasound-Mediated Attenuation of Epilepsy Based on the Topological Theory.

Authors: Zhang M, Li B, Liu Y, Tang R, Lang Y, Huang Q, He J

Epilepsy is common brain dysfunction, where abnormal synchronized activities can be observed across multiple brain regions. Low-frequency focused pulsed ultrasound has been proven to modulate the epileptic brain network. In this study, we used two modes of low-intensity focused ultrasound (pulsed-wave and continuous-wave) to sonicate the brains of KA-induced epileptic rats, analyzed the EEG functional brain connections to explore their respective effect on the epileptic brain network, and discuss the mechanism of ultrasound neuromodulation. By comparing the brain network characteristics before and after sonication, we found that two modes of ultrasound both significantly affected the functional brain network, especially in the low-frequency band below 12 Hz. After two modes of sonication, the power spectral density of the EEG signals and the connection strength of the brain network were significantly reduced, but there was no significant difference between the two modes. Our results indicated that the ultrasound neuromodulation could effectively regulate the epileptic brain connections. The ultrasound-mediated attenuation of epilepsy was independent of modes of ultrasound.

Introduction

Purpose Transcranial ultrasound stimulation
Study Objective To determine how two modes of low-intensity focused ultrasound (pulsed-wave and continuous-wave) modulate EEG functional brain network connections in kainic acid–induced epileptic rats.
Animal model / Human subject Rat (Rattus norvegicus); strain None; age None; sex None
Disease model Epilepsy
Cargo name and characteristics Kainic acid (KA) — small-molecule excitotoxin used to chemically induce epilepsy (KA-induced epileptic rat model)

Outcomes and Safety

Summary of Outcomes Low-intensity focused ultrasound significantly reduced EEG power (especially <12 Hz) and functional brain-network connection strength in KA-induced epileptic rats, indicating effective attenuation of epilepsy. Both pulsed-wave and continuous-wave sonication were successful and produced similar effects.
Safety-related matter The excerpt contains no mention of safety or adverse effects. No adverse events or safety assessments were reported.

Brain Region

Visualization unavailable

Ultrasound Parameters

FUS Mode both (pulsed and continuous)
Focal Characteristics Focal depth: None, Focal length: None, Aperture size: None
Treatment frequency multiple sessions

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