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Trial measurement of movement-related cortical dynamics using electroencephalography and diffuse correlation spectroscopy

Producción científica: Conference contributionrevisión exhaustiva

3 Citas (Scopus)

Resumen

To better characterize movement-related neurophysiological change, the authors propose to measure not only neural activity through the electroencephalogram (EEG) but also cerebral blood flow (CBF) using a new technology, near-infrared diffuse correlation spectroscopy (DCS). A preliminary trial is described, in which EEG, DCS, and exerted force were simultaneously recorded during a cue-triggered hand grip task. Eight channels of EEG were acquired from frontal, central, and occipital regions, and DCS signals were collected from locations over frontal and motor cortex. Event-related desynchronization (ERD) was observed at the onset of hand movement and lasted until movement ceased. EEG from the motor area showed a significant ERD in the 8-13 Hz mu band (p<0.001). Mean CBF increased during the task by 6.8 % (p<0.001) in the motor location and by 4.5 % (p<0.001) in the frontal location, respectively. These preliminary observations suggest that a combination of electrical and optical measurements may provide a more complete characterization of brain dynamics related to movement. A broader study is required to explore the potential benefit of these combined measurements when used as command signals for brain-computer interfaces.

Idioma originalEnglish
Título de la publicación alojada2017 22nd International Conference on Methods and Models in Automation and Robotics, MMAR 2017
Páginas642-645
Número de páginas4
ISBN (versión digital)9781538624029
DOI
EstadoPublished - sept 19 2017
Evento22nd International Conference on Methods and Models in Automation and Robotics, MMAR 2017 - Miedzyzdroje, Poland
Duración: ago 28 2017ago 31 2017

Serie de la publicación

Nombre2017 22nd International Conference on Methods and Models in Automation and Robotics, MMAR 2017

Conference

Conference22nd International Conference on Methods and Models in Automation and Robotics, MMAR 2017
País/TerritorioPoland
CiudadMiedzyzdroje
Período8/28/178/31/17

Nota bibliográfica

Publisher Copyright:
© 2017 IEEE.

Financiación

This work was supported by National Science Foundation Grant No. 1539068 and by American Heart Association Grant-In-Aid #16GRNT30820006. Bahrani received scholarship support from The Higher Committee for Education Development in Iraq.

FinanciadoresNúmero del financiador
American Heart Association Grant-in-Aid16GRNT30820006
National Science Foundation Arctic Social Science Program1539068
American the American Heart Association
Higher Committee for Education Development in Iraq

    ASJC Scopus subject areas

    • Artificial Intelligence
    • Control and Optimization
    • Modeling and Simulation

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