High-Resolution Focused Ultrasound Neuromodulation Induces Limb-Specific Motor Responses in Mice in Vivo.
Authors: Aurup C, Kamimura HAS, Konofagou EE
Ultrasound can modulate activity in the central nervous system, including the induction of motor responses in rodents. Recent studies investigating ultrasound-induced motor movements have described mostly bilateral limb responses, but quantitative evaluations have failed to reveal lateralization or differences in response characteristics between separate limbs or how specific brain targets dictate distinct limb responses. This study uses high-resolution focused ultrasound (FUS) to elicit motor responses in anesthetized mice in vivo and four-limb electromyography (EMG) to evaluate the latency, duration and power of paired motor responses (n = 1768). The results indicate that FUS generates target-specific differences in electromyographic characteristics and that brain targets separated by as little as 1 mm can modulate the responses in individual limbs differentially. Exploiting these differences may provide a tool for quantifying the susceptibility of underlying neural volumes to FUS, understanding the functioning of the targeted neuroanatomy and aiding in mechanistic studies of this non-invasive neuromodulation technique.
Introduction
Purpose
Transcranial ultrasound stimulation
Study Objective
Determine whether high-resolution focused ultrasound can produce target- and limb-specific motor responses in anesthetized mice by measuring four-limb EMG characteristics.
Animal model / Human subject
Mice (Mus musculus); strain None; age None; sex None
Disease model
Healthy
Outcomes and Safety
Summary of Outcomes
High-resolution focused ultrasound evoked motor responses in anesthetized mice, producing target-specific differences in four-limb EMG latency, duration, and power; brain targets separated by as little as 1 mm differentially modulated individual limbs. Specific focused ultrasound parameter settings (e.g., frequency, intensity, pulse duration) were None in the provided excerpt.
Safety-related matter
No safety concerns or adverse effects are mentioned in the provided text.
Brain Region
Ultrasound Parameters
Focal Characteristics
Focal depth: None; Focal length: None; Aperture size: None
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