Language-training induced changes of ERPs (amplitude, peak delay, onset) in stroke patients with aphasia
neurotechlab.socsci.ru.nl·Zorg & behandeling·nog niet gecontroleerd
Vacaturetekst
Language-training induced changes of ERPs (amplitude, peak delay, onset) in stroke patients with aphasia | Data-Driven NeuroTechnology lab
Language-training induced changes of ERPs (amplitude, peak delay, onset) in stroke patients with aphasia
Does the P300 onset indicate training progress of a BCI-supported language rehabilitation training?
Left-hemispheric stroke can lead to different language deficits, which are a heavy burden both, for the individual and his/her social interaction, as well as for society. While spontaneous recovery in the first weeks after the stroke may reduce this so-called aphasia, many patients remain with different language problems also in the chronic phase. The rehabilitation of these stroke-induced language deficits can be brought forward in chronic patients with a novel BCI-based training approach developed in our research group. The training comprises the presentation of sequences of words and requires patients to focus their attention to target words while ignoring non-target words. The training so far has been tested successfully in a pilot trial (see https://doi.org/10.1093/braincomms/fcac008) . During the training, the BCI system evaluates event-related potentials (ERPs) that are evoked by both, target and non-target words.
To better understand the underlying mechanisms of the observed training success, we would like to investigate the following question:
Can changes of P300 ERP peaks inform about the training progress during language training of patients with aphasia?
BCI background by accomplished course SOW-BKI 323 or SOW-MKI 74
Good programming skills in Python (familiarity with numpy, sklearn, at least one popular deep learning framework).
Good mathematical background and intuition.
Meer bij neurotechlab.socsci.ru.nl
| Data-Driven NeuroTechnology lab Adaptation Strategies for Block-Toeplitz Regularized Linear Discriminant Analysis While most machine learning methods make the assumption that data is i.i.d., the…
| Data-Driven NeuroTechnology lab Many conventional BCI systems adhere to fixed trial lengths. This allows users to issue commands only at predetermined intervals and using a constant amount of EEG…
| Data-Driven NeuroTechnology lab Bringing deep learning decoding models to the lab On developing and conducting experimental protocols to validate the properties of recent BCI deep learning models…
| Data-Driven NeuroTechnology lab A brain-computer interface (BCI) can use a diverse array of control signals, decodable from measured electroencephalogram (EEG) data. One such control signal is the…
| Data-Driven NeuroTechnology lab The brain-computer interface (BCI) that uses the code-modulated visual evoked potential (c-VEP) is one of the fastest non-implanted BCIs wordwide. A much used…
| Data-Driven NeuroTechnology lab Digital biomarkers for Parkinson's Disease Parkinson’s Disease (PD) is a progressive neurodegenerative disorder primarily characterized by motor symptoms such as…
En nog 13 vacatures bij deze werkgever; die vind je via de lijst.
Bron
Wij zagen deze vacature op de website van de werkgever. Daar staat de actuele tekst; wijzigingen na 30 juli 2026 zien wij pas bij de volgende controle. Wij hebben deze vacature na het vinden nog niet opnieuw gecontroleerd, dus hij kan inmiddels vervuld zijn.
https://neurotechlab.socsci.ru.nl/jobs/aphasiatraining_p3onset/