Title :
Detection and classification of sensory information from acute spinal cord recordings
Author :
Borisoff, J.F. ; McPhail, L.T. ; Saunders, J.T.W. ; Birch, G.E. ; Ramer, M.S.
Abstract :
One avenue of research for partial restoration of function following spinal cord injury is the use of neural prostheses, an example of which is functional electrical stimulation (FES) devices for motor functions. Neural prostheses may also be useful for the extraction of sensory information directly from the nervous system. We suggest the spinal cord as a possible site for the detection of peripheral sensory information from neural activity alone. Acute multichannel extracellular recordings were used to extract neural spike activity elicited from peripheral sensations from the spinal cords of rats. To test the recording method and classification potential, eight classes of sensory events were recorded consisting of electrical stimulation of seven locations on rat forepaws, and another class of data during which no stimulus was present. A dual-stage classification scheme using principal component analysis and k-Means clustering was devised to classify the sensory events during single trials. The eight tasks were correctly identified at a mean accuracy of 96%. Thus, we have shown the methodology to detect and classify peripheral sensory information from multichannel recordings of the spinal cord. These methods may be useful, for example, in a closed-loop FES for restoration of hand grasp
Keywords :
bioelectric potentials; brain; neurophysiology; principal component analysis; prosthetics; acute multichannel extracellular recordings; brain interface; closed-loop FES; electrical stimulation; functional electrical stimulation devices; hand grasp restoration; k-Means clustering; motor functions; nervous system; neural prostheses; neural spike activity; peripheral sensory information; principal component analysis; rat forepaws; sensory events; spinal cord injury; Data mining; Electrical stimulation; Extracellular; Nervous system; Neuromuscular stimulation; Prosthetics; Rats; Spinal cord; Spinal cord injury; Testing; Brain interface; functional electrical stimulation; neural prosthesis; spinal cord injury; Action Potentials; Algorithms; Animals; Computer Simulation; Electric Stimulation; Information Storage and Retrieval; Male; Models, Neurological; Neurons, Afferent; Posterior Horn Cells; Rats; Rats, Sprague-Dawley; Spinal Cord;
Journal_Title :
Biomedical Engineering, IEEE Transactions on
DOI :
10.1109/TBME.2006.877800