Stable Decoding from a Speech BCI Enables Control for an Individual with ALS without Recalibration for 3 Months
Publication date
2023-12-15
Authors
Luo, Shiyu
Angrick, Miguel
Coogan, Christopher
Candrea, Daniel N.
Wyse-Sookoo, Kimberley
Shah, Samyak
Rabbani, Qinwan
Milsap, Griffin W.
Weiss, Alexander R.
Anderson, William S.
Editors
Advisors
Supervisors
Document Type
Article
Metadata
Show full item recordCollections
License
cc_by
Abstract
Brain-computer interfaces (BCIs) can be used to control assistive devices by patients with neurological disorders like amyotrophic lateral sclerosis (ALS) that limit speech and movement. For assistive control, it is desirable for BCI systems to be accurate and reliable, preferably with minimal setup time. In this study, a participant with severe dysarthria due to ALS operates computer applications with six intuitive speech commands via a chronic electrocorticographic (ECoG) implant over the ventral sensorimotor cortex. Speech commands are accurately detected and decoded (median accuracy: 90.59%) throughout a 3-month study period without model retraining or recalibration. Use of the BCI does not require exogenous timing cues, enabling the participant to issue self-paced commands at will. These results demonstrate that a chronically implanted ECoG-based speech BCI can reliably control assistive devices over long time periods with only initial model training and calibration, supporting the feasibility of unassisted home use.
Keywords
amyotrophic lateral sclerosis (ALS), brain-computer interfaces, neural decoding, speech brain-computer interface (BCI), Medicine (miscellaneous), General Chemical Engineering, General Materials Science, Biochemistry, Genetics and Molecular Biology (miscellaneous), General Engineering, General Physics and Astronomy
Citation
Luo, S, Angrick, M, Coogan, C, Candrea, D N, Wyse-Sookoo, K, Shah, S, Rabbani, Q, Milsap, G W, Weiss, A R, Anderson, W S, Tippett, D C, Maragakis, N J, Clawson, L L, Vansteensel, M J, Wester, B A, Tenore, F V, Hermansky, H, Fifer, M S, Ramsey, N F & Crone, N E 2023, 'Stable Decoding from a Speech BCI Enables Control for an Individual with ALS without Recalibration for 3 Months', Advanced Science, vol. 10, no. 35, 2304853. https://doi.org/10.1002/advs.202304853