Effects of sonication parameters on transcranial focused ultrasound brain stimulation in an ovine model.
Authors: Yoon K, Lee W, Lee JE, Xu L, Croce P, Foley L, Yoo SS
Low-intensity focused ultrasound (FUS) has significant potential as a non-invasive brain stimulation modality and novel technique for functional brain mapping, particularly with its advantage of greater spatial selectivity and depth penetration compared to existing non-invasive brain stimulation techniques. As previous studies, primarily carried out in small animals, have demonstrated that sonication parameters affect the stimulation efficiency, further investigation in large animals is necessary to translate this technique into clinical practice. In the present study, we examined the effects of sonication parameters on the transient modification of excitability of cortical and thalamic areas in an ovine model. Guided by anatomical and functional neuroimaging data specific to each animal, 250 kHz FUS was transcranially applied to the primary sensorimotor area associated with the right hind limb and its thalamic projection in sheep (n = 10) across multiple sessions using various combinations of sonication parameters. The degree of effect from FUS was assessed through electrophysiological responses, through analysis of electromyogram and electroencephalographic somatosensory evoked potentials for evaluation of excitatory and suppressive effects, respectively. We found that the modulatory effects were transient and reversible, with specific sonication parameters outperforming others in modulating regional brain activity. Magnetic resonance imaging and histological analysis conducted at different time points after the final sonication session, as well as behavioral observations, showed that repeated exposure to FUS did not damage the underlying brain tissue. Our results suggest that FUS-mediated, non-invasive, region-specific bimodal neuromodulation can be safely achieved in an ovine model, indicating its potential for translation into human studies.
Introduction
Purpose
Transcranial ultrasound stimulation
Study Objective
To determine how different low-intensity focused ultrasound sonication parameters affect transient excitatory and suppressive neuromodulation of cortical and thalamic regions in sheep.
Animal model / Human subject
Sheep (ovine, Ovis aries); strain None; age None; sex None; n = 10
Disease model
healthy
MRI or image guidance method
Guided by anatomical and functional neuroimaging data specific to each animal (MRI/functional neuroimaging)
Targeted brain region(s)
Primary Sensorimotor Area ( Hind Limb) And Its Thalamic Projection
Outcomes and Safety
Summary of Outcomes
Transcranial low‑intensity FUS produced transient, reversible bimodal neuromodulation in sheep—evoking modest contralateral EMG excitation (max ~12.4% response) with excitatory parameters centered on 0.5 ms tone‑burst and 70% duty cycle (e.g., EP17: 0.5 ms TB, 70% DC, I_sppa ≈15.8 W/cm2) and suppressing somatosensory evoked potentials (18–35% reduction) using SP1 and SP3 (0.5 ms TB, I_sppa ≈5.4 W/cm2 at 3% and 5% DC); repeated sonication showed no behavioral or histological evidence of tissue damage.
Duration of biological effect
5 min
Safety-related matter
Repeated transcranial FUS caused no observable adverse effects: no epileptiform EEG activity, no MRI evidence of tissue damage or BBB disruption, normal behavior/weight/appetite, no histological signs of injury, and negligible focal heating; audible buzzing was noted in some excitatory sessions and short-latency EMG responses suggest possible startle/auditory confounds but not tissue damage.
Brain Region
Ultrasound Parameters
FUS Frequency
250 kHz
Focal Characteristics
Focal depth: None; Focal length: None; Aperture size: None
Treatment frequency
multiple sessions
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