[HTML][HTML] A Review of Brain–Computer Interface-Based Language Decoding: From Signal Interpretation to Intelligent Communication

Y Qiu, H Liu, M Zhao - Applied Sciences, 2025 - mdpi.com
Brain–computer interface (BCI) technologies for language decoding have emerged as a
transformative bridge between neuroscience and artificial intelligence (AI), enabling direct …

Imitation of Multisyllabic Items by Children With Developmental Language Disorder: Evidence for Word-Level Atypical Speech Envelope and Pitch Contours

L Parvez, M Keshavarzi, S Richards… - Journal of Speech …, 2024 - pubs.asha.org
Purpose: Developmental language disorder (DLD) is a multifaceted disorder. Recently,
interest has grown in prosodic aspects of DLD, but most investigations of possible prosodic …

Beyond linear neural envelope tracking: a mutual information approach

P De Clercq, J Vanthornhout… - Journal of neural …, 2023 - iopscience.iop.org
Objective. The human brain tracks the temporal envelope of speech, which contains
essential cues for speech understanding. Linear models are the most common tool to study …

Neural processing of rhythmic speech by children with developmental language disorder (DLD): An EEG study

M Keshavarzi, S Richards, G Feltham, L Parvez… - Imaging …, 2024 - direct.mit.edu
Sensitivity to rhythmic and prosodic cues in speech has been described as a precursor of
language acquisition. Consequently, atypical rhythmic processing during infancy and early …

Beyond Linear Neural Envelope Tracking: A Mutual Information Approach

P De Clercq, J Vanthornhout, M Vandermosten… - bioRxiv, 2022 - biorxiv.org
The human brain tracks the temporal envelope of speech, which contains essential cues for
speech understanding. Linear models are the most common tool to study neural envelope …