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Transcranial focused ultrasound to V5 enhances human visual motion brain-computer interface by modulating feature-based attention

Joshua Kosnoff, Kai Yu, Chang Liu and Bin He ()
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Joshua Kosnoff: Carnegie Mellon University
Kai Yu: Carnegie Mellon University
Chang Liu: Carnegie Mellon University
Bin He: Carnegie Mellon University

Nature Communications, 2024, vol. 15, issue 1, 1-18

Abstract: Abstract A brain-computer interface (BCI) enables users to control devices with their minds. Despite advancements, non-invasive BCIs still exhibit high error rates, prompting investigation into the potential reduction through concurrent targeted neuromodulation. Transcranial focused ultrasound (tFUS) is an emerging non-invasive neuromodulation technology with high spatiotemporal precision. This study examines whether tFUS neuromodulation can improve BCI outcomes, and explores the underlying mechanism of action using high-density electroencephalography (EEG) source imaging (ESI). As a result, V5-targeted tFUS significantly reduced the error in a BCI speller task. Source analyses revealed a significantly increase in theta and alpha activities in the tFUS condition at both V5 and downstream in the dorsal visual processing pathway. Correlation analysis indicated that the connection within the dorsal processing pathway was preserved during tFUS stimulation, while the ventral connection was weakened. These findings suggest that V5-targeted tFUS enhances feature-based attention to visual motion.

Date: 2024
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DOI: 10.1038/s41467-024-48576-8

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