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Estimation of the spatial profile of neuromodulation and the temporal latency in motor responses induced by focused ultrasound brain stimulation.

Authors: Kim H, Lee SD, Chiu A, Yoo SS, Park S

This study investigates the spatial profile and the temporal latency of the brain stimulation induced by the transcranial application of pulsed focused ultrasound (FUS). The site of neuromodulation was detected using 2-deoxy-2-[¹⁸F]fluoro-D-glucose PET immediately after FUS sonication on the unilateral thalamic area of Sprague-Dawley rats. The latency of the stimulation was estimated by measuring the time taken from the onset of the stimulation of the appropriate brain motor area to the corresponding tail motor response. The brain area showing elevated glucose uptake from the PET image was much smaller (56±10% in diameter, 24±6% in length) than the size of the acoustic focus, which is conventionally defined by the full-width at half-maximum of the acoustic intensity field. The spatial dimension of the FUS-mediated neuromodulatory area was more localized, approximated to be full-width at 90%-maximum of the acoustic intensity field. In addition, the time delay of motor responses elicited by the FUS sonication was 171±63 (SD) ms from the onset of sonication. When compared with latencies of other nonultrasonic neurostimulation techniques, the longer time delay associated with FUS-mediated motor responses is suggestive of the nonelectrical modes of neuromodulation, making it a distinctive brain stimulation method.

Introduction

Purpose Transcranial ultrasound stimulation
Study Objective To characterize the spatial profile and temporal latency of neuromodulation induced by transcranial pulsed focused ultrasound in rat brains.
Animal model / Human subject Rat (Rattus norvegicus), Sprague–Dawley; age: not specified; sex: male
Disease model Healthy
MRI or image guidance method Geometry-based, stereotactic optical guidance
Targeted brain region(s) Unilateral Thalamic Area

Outcomes and Safety

Summary of Outcomes Transcranial pulsed FUS produced a localized neuromodulatory (around 56% of the acoustic focus diameter and around 24% of its length) and evoked tail motor responses with an avg latency of 171+-63 ms. Response latencies did not differ significantly among the tested duty cycles
Safety-related matter The paper does not mention any safety concerns or adverse effects; no adverse effects were reported in the study.

Brain Region

Ultrasound Parameters

Ultrasound instrument Air-backed, single-element FUS transducer (spherical segmented in shape, 6 cm in diameter, 7 cm in radius of curvature, 350 kHz, FF)
FUS Frequency 350 kHz
FUS Intensity 3 W/cm2 Ispta (PET experiment); 3.5 +-1.5 W/cm2 Ispta minimum response threshold
FUS Mode pulsed
Pulse duration 0.5 ms
Duration of a single FUS session 40 min
Focal Characteristics Focal depth: None; Focal length: None; Aperture size: None
Treatment frequency single session

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