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A visual brain-computer interface as communication aid for patients with amyotrophic lateral sclerosis
Ceci Verbaarschot1, Daniëlle Tump2, Andreea Lutu1
1Radboud University, Donders Institute for Brain, Cognition and Behaviour, Nijmegen, Netherlands.
Summary
Code-modulated Visual Evoked Potentials (cVEP) brain-computer interface (BCI) spellers show high accuracy for ALS patients. This cVEP BCI technology offers a promising communication tool for individuals with neurodegenerative diseases.
Area of Science:
- Neuroscience
- Biomedical Engineering
- Rehabilitation Technology
Background:
- Amyotrophic Lateral Sclerosis (ALS) progressively impairs motor function, necessitating assistive communication technologies.
- Existing visual Brain-Computer Interface (BCI) spellers have limitations in speed and accuracy for ALS patients.
- Code-modulated Visual Evoked Potentials (cVEP) offer a potential advancement for visual BCI spellers.
Purpose of the Study:
- To evaluate the brain responses, Brain-Computer Interface (BCI) performance, and user experience of a cVEP speller in healthy individuals and ALS patients.
- To compare the efficacy of the cVEP speller against existing visual BCI technologies for ALS communication.
Main Methods:
- A cVEP speller was tested on 20 healthy participants and 10 individuals with ALS.
- Participants engaged in cued and free spelling tasks, as well as Yes/No answer selections.
- Brain responses, BCI performance metrics, and user experience were systematically assessed.
Main Results:
- The cVEP speller achieved high accuracy across all participant groups: 79% for ALS patients, 88% for older healthy adults, and 94% for younger healthy adults in cued spelling.
- All participants successfully answered Yes/No questions with approximately 90% accuracy.
- ALS patients achieved an average typing speed of 10 characters per minute.
Conclusions:
- The cVEP speller demonstrates superior performance compared to other visual BCI spellers for ALS patients.
- The study confirms the general usability of cVEP signals for ALS patients, indicating potential applications beyond spelling, such as smart home device control.

