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Pulsed-Focused Ultrasound Provides Long-Term Suppression of Epileptiform Bursts in the Kainic Acid-Induced Epilepsy Rat Model.

Authors: Chu PC, Yu HY, Lee CC, Fisher R, Liu HL

Focused ultrasound (FUS) has potential utility for modulating regional brain excitability and possibly aiding seizure control; however, the duration of any beneficial effect is unknown. This study explores the efficacy and time course of a short series of pulsed FUS in suppressing EEG epileptiform spikes/bursts in a kainic acid (KA) animal model of temporal lobe epilepsy. Forty-four male Sprague-Dawley rats were recorded for 14 weeks with EEG while software calculated EEG numbers of epileptiform spikes and bursts (≥ 3 spikes/s). Four regimens of FUS given in a single session at week 7 were evaluated, with mechanical index (MI) ranging from 0.25 to 0.75, intensity spatial peak temporal average (I<sub>SPTA</sub>) from 0.1 to 2.8 W per cm<sup>2</sup>, duty cycle from 1 to 30%, and three consecutive pulse trains for 5 or 10 min each. Controls included sham injections in four and KA without FUS in eleven animals. Histological analysis investigated tissue effects. All animals receiving KA evidenced EEG spikes, averaging 10,378 ± 1651 spikes per 8 h and 1255 ± 199 bursts per 8 h by weeks 6-7. The KA-only group showed a 30% of increase in spikes and bursts by week 14. Compared to the KA-only group, spike counts were reduced by about 25%, burst counts by about 33%, and burst durations by about 50% with FUS. Behavioral seizures were not analyzed, but electrographic seizures longer than 10 s declined up to 70% after some FUS regimens. Repeated-measure ANOVA showed a significant effect of higher intensity and longer sonication duration FUS treatment using 0.75-MI, I<sub>SPTA</sub> 2.8 W/cm<sup>2</sup>, 30% duty cycle for 10-min sonications (group effect, F (4, 15) = 6.321, p < 0.01; interaction effect, F (44, 165) = 1.726, p < 0.01), with the hippocampal protective effect lasting to week 14, accompanied by decreased inflammation and gliosis effect. In contrast, spike and burst suppression were achieved using an FUS regimen with 0.25-MI I<sub>SPTA</sub> 0.5 W/cm<sup>2</sup>, 30% duty cycle for 10-min sonications. This regimen reduced inflammation and gliosis at weeks 8-14 and protected hippocampal tissue. This study demonstrates that low-intensity pulsed ultrasound can modulate epileptiform activity for up to 7 weeks and, if replicated in the clinical setting, might be a practical treatment for epilepsy.

Introduction

Purpose transcranial ultrasound stimulation
Study Objective Evaluate the long-term efficacy of pulsed focused ultrasound in suppressing EEG epileptiform spikes and bursts in the kainic acid-induced temporal lobe epilepsy rat model
Animal model / Human subject Sprague-Dawley rat, male, 290-330 g
Disease model temporal lobe epilepsy (kainic acid-induced)
MRI or image guidance method stereotaxtic (No MRI)
Targeted brain region(s) Hippocampus
Target coordinates AP: −2.3 mm, ML: +4.5 mm, DV: −8.2 mm from bregma

Outcomes and Safety

Summary of Outcomes Pulsed FUS (0.5 MHz, 0.25 MI, ISPTA 0.5 W/cm², 30% duty cycle, three 10-min trains) reduced spike counts by ~18%, burst counts by ~27%, and burst duration by ~30% compared to KA-only controls, with effects lasting up to 7 weeks (weeks 8-14). Higher intensity (0.75 MI, 2.8 W/cm²) also effective but caused inflammation/gliosis. Lower intensity reduced gliosis and protected hippocampal volume.
Duration of biological effect 7 weeks (up to 14 week post-treatment)
Safety-related matter High-intensity (0.75 MI, 2.8 W/cm²) caused inflammation and gliosis in hippocampus. Low-intensity (0.25 MI, 0.5 W/cm²) produced no detectable tissue damage and reduced KA-induced gliosis.

Brain Region

Ultrasound Parameters

Ultrasound instrument SonicConcept single-element focused transducer, 0.5 MHz, radius of curvature 64.3 mm
FUS Frequency 0.5MHz
FUS Intensity ISPTA 0.5 W/cm² (group 6, effective and safer); also 2.8 W/cm² is tested
FUS Mode pulsed
Duration of a single FUS session 30 min total (three 10-min pulse trains with 5-min off intervals between)
Focal Characteristics ‘-6 dB focal dimensions: 2 mm (diameter) × 12 mm (length)
Treatment frequency single session (three pulse trains in one day at week 7)

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