Elimination of peripheral auditory pathway activation does not affect motor responses from ultrasound neuromodulation.
Authors: Mohammadjavadi M, Ye PP, Xia A, Brown J, Popelka G, Pauly KB
Recent studies in a variety of animal models including rodents, monkeys, and humans suggest that transcranial focused ultrasound (tFUS) has considerable promise for non-invasively modulating neural activity with the ability to target deep brain structures. However, concerns have been raised that motor responses evoked by tFUS may be due to indirect activation of the auditory pathway rather than direct activation of motor circuits. In this study, we sought to examine the involvement of peripheral auditory system activation from tFUS stimulation applied to elicit motor responses. The purpose was to determine to what extent ultrasound induced auditory artifact could be a factor in ultrasound motor neuromodulation. In this study, tFUS-induced electromyography (EMG) signals were recorded and analyzed in wild-type (WT) normal hearing mice and two strains of genetically deaf mice to examine the involvement of the peripheral auditory system in tFUS-stimulated motor responses. In addition, auditory brainstem responses (ABRs) were measured to elucidate the effect of the tFUS stimulus envelope on auditory and motor responses. We also varied the tFUS stimulation duration to measure its effect on motor response duration. We show, first, that the sharp edges in a tFUS rectangular envelope stimulus activate the peripheral afferent auditory pathway and, second, that smoothing these edges eliminates the auditory responses without affecting the motor responses in normal hearing WT mice. We further show that by eliminating peripheral auditory activity using two different strains of deaf knockout mice, motor responses are the same as in normal hearing WT mice. Finally, we demonstrate a high correlation between tFUS pulse duration and EMG response duration. These results support the concept that tFUS-evoked motor responses are not a result of stimulation of the peripheral auditory system.
Introduction
Purpose
Transcranial ultrasound stimulation
Study Objective
To determine whether peripheral auditory activation contributes to motor responses evoked by transcranial focused ultrasound (tFUS).
Animal model / Human subject
Mouse (Mus musculus), wild-type (WT) and two genetically deaf knockout strains (strain names not specified); age 8-12 weeks; sex female
Disease model
Deafness (genetic hearing loss)
Targeted brain region(s)
Midbrain
Target coordinates
Midline, 8 mm caudal to the eyes
Outcomes and Safety
Summary of Outcomes
Transcranial focused ultrasound (tFUS) evoked motor responses in mice that persisted in two genetically deaf strains and after smoothing stimulus envelopes that eliminated peripheral auditory brainstem responses, supporting that motor effects are not mediated by the auditory pathway. Successful parameters included smoothed (non-rectangular) stimulus envelopes (which removed auditory activation while preserving EMG responses) and varied tFUS pulse durations that produced highly correlated EMG response durations.
Safety-related matter
No adverse effects or safety issues were reported. The only peripheral effect observed was activation of the auditory pathway by sharp stimulus edges, which was eliminated by smoothing without altering motor responses.
Brain Region
Ultrasound Parameters
Ultrasound instrument
Planar ultrasound transducer (V301, Olympus, Waltham, MA, USA)
FUS Frequency
500 kHz
FUS Intensity
2.9 W/cm2 Ispta; 1 W/cm2, 2.79 W/cm2, 3.78 W/cm2 Ispta
FUS Mode
continuous and pulsed
Duration of a single FUS session
80 ms
Focal Characteristics
Focal depth: None; Focal length: None; Aperture size: None
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