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A Multi-modal Machine Learning Approach and Toolkit to Automate Recognition of Early Stages of Dementia Among British Sign Language Users.

, , , , , и . ECCV Workshops (2), том 12536 из Lecture Notes in Computer Science, стр. 278-293. Springer, (2020)

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Phonological processing in deaf signers and the impact of age of first language acquisition., , , , и . NeuroImage, 40 (3): 1369-1379 (2008)How the Brain Processes Language in Different Modalities.. COST 2102 School (Vietri), том 5398 из Lecture Notes in Computer Science, стр. 145-163. Springer, (2008)Fingerspelling, signed language, text and picture processing in deaf native signers: The role of the mid-fusiform gyrus., , , , , , , и . NeuroImage, 35 (3): 1287-1302 (2007)Differential activity in Heschl's gyrus between deaf and hearing individuals is due to auditory deprivation rather than language modality., , , , , , и . NeuroImage, (2016)SeeHear: Signer Diarisation and a New Dataset., , , , , , , , , и 4 other автор(ы). ICASSP, стр. 2280-2284. IEEE, (2021)Monitoring Different Phonological Parameters of Sign Language Engages the Same Cortical Language Network but Distinctive Perceptual Ones., , , , , , и . J. Cogn. Neurosci., 28 (1): 20-40 (2016)Real Time Hand Movement Trajectory Tracking for Enhancing Dementia Screening in Ageing Deaf Signers of British Sign Language., , , и . CD-MAKE, том 11713 из Lecture Notes in Computer Science, стр. 377-394. Springer, (2019)Activation in auditory cortex by speechreading in hearing people: FMRI studies., , , , , , , , , и . AVSP, стр. 7. ISCA, (1999)Dissociating linguistic and nonlinguistic gestural communication in the brain., , , , , , , и . NeuroImage, 22 (4): 1605-1618 (2004)Corrigendum to "Fingerspelling, signed language, text and picture processing in deaf native signers: The role of the mid-fusiform gyrus" NeuroImage 35 (2007) 1287-1302., , , , , , , и . NeuroImage, 40 (2): 984-986 (2008)