Mechanical Artifacts During Transcranial Focused Ultrasound Mimic Biologically Evoked Responses.
Authors: Nguyen D, Konofagou E, Dmochowski JP
Low-intensity transcranial focused ultrasound stimulation (tFUS) has emerged as a promising technique for non-invasive neuromodulation, offering deep brain penetration and high spatial precision. However, the electrophysiological effects of tFUS remain poorly understood, in part due to challenges distinguishing genuine neural responses from mechanical artifacts. Here we investigated the electrophysiological signatures captured during tFUS of the anesthetized rat hippocampus using silicon microelectrodes. We observed a strong, stereotyped local field potential (LFP) response that was time-locked to the onset and offset of sonication and resembled sensory-evoked potentials. Critically, the same waveform was observed in euthanized animals, confirming a non-biological, artifact-driven origin. The artifact scaled with acoustic intensity and was most pronounced under continuous-wave sonication. These findings suggest that electrode movement induced by ultrasound can generate artifactual LFP signals that closely mimic authentic neural responses. Our results underscore the need for caution when interpreting in situ electrophysiological recordings during tFUS and advocate for alternative, artifact-resistant readouts such as fiber photometry to unambiguously detect neuromodulatory effects.
Introduction
Purpose
Transcranial ultrasound stimulation
Study Objective
To investigate electrophysiological signals recorded during low-intensity transcranial focused ultrasound stimulation of the rat hippocampus and determine whether observed LFP responses reflect true neural activity or ultrasound-induced artifacts.
Animal model / Human subject
Rat (Rattus norvegicus); strain None; age None; sex None
Disease model
Healthy
Targeted brain region(s)
Hippocampus
Outcomes and Safety
Summary of Outcomes
tFUS produced a strong, stereotyped LFP response time-locked to sonication onset and offset that was identical in euthanized animals, indicating the signals were non-biological artifacts likely due to ultrasound-induced electrode movement. The artifact scaled with acoustic intensity and was most pronounced with continuous-wave sonication (higher intensities and continuous-wave parameters drove the effect).
Safety-related matter
The paper does not report any safety concerns or adverse effects; no adverse effects were observed or mentioned in the study.
Brain Region
Ultrasound Parameters
FUS Mode
continuous
Focal Characteristics
Focal depth: None; Focal length: None; Aperture size: None
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