Title :
Revamping signal processing for adaptive, real time, bi-directional Brain Machine Interface systems
Author :
Oweiss, Karim G. ; Shetliffe, Michael M. ; Eldawlatly, Seif
Author_Institution :
ECE Dept., Michigan State Univ., East Lansing, MI
fDate :
March 31 2008-April 4 2008
Abstract :
Brain machine interfaces (BMIs) have recently received significant attention from the neuroscience and engineering communities as a result of striking advances in monitoring, processing, and modeling brain function at multiple temporal and spatial resolutions. These advances, however, have also raised significant challenges to both communities that are becoming the focus of numerous ongoing research efforts. Broadly categorized based on their level of invasiveness, BMIs relying on implantable microelectrode arrays (MEAs) have received the most attention. This paper briefly reviews some fundamental concepts underlying the operation of MEA-based BMIs and highlights in particular the signal processing challenges faced by these systems in light of their resource-constrained operation. Finally, we summarize some of our recent progress in this area and suggest some open questions for future research.
Keywords :
biomedical electrodes; medical signal processing; microelectrodes; neurophysiology; patient monitoring; user interfaces; MEA-based BMI; adaptive real time bi-directional BMI systems; brain function modeling; brain function monitoring; brain machine interfaces; microelectrode arrays; neuroscience communities; revamping signal processing; Adaptive signal processing; Array signal processing; Bidirectional control; Brain modeling; Condition monitoring; Face; Microelectrodes; Neuroscience; Real time systems; Spatial resolution; Nervous system; brain machine interface; decoding; spike trains; wavelets;
Conference_Titel :
Acoustics, Speech and Signal Processing, 2008. ICASSP 2008. IEEE International Conference on
Conference_Location :
Las Vegas, NV
Print_ISBN :
978-1-4244-1483-3
Electronic_ISBN :
1520-6149
DOI :
10.1109/ICASSP.2008.4518830