DocumentCode
139132
Title
Towards a miniaturized brain-machine-spinal cord interface (BMSI) for restoration of function after spinal cord injury
Author
Shahdoost, Shahab ; Frost, Shawn ; Van Acker, Gustaf ; DeJong, Stacey ; Dunham, Caleb ; Barbay, Scott ; Nudo, Randolph ; Mohseni, Pedram
Author_Institution
Electr. Eng. & Comput. Sci. Dept., Case Western Reserve Univ., Cleveland, OH, USA
fYear
2014
fDate
26-30 Aug. 2014
Firstpage
486
Lastpage
489
Abstract
Nearly 6 million people in the United States are currently living with paralysis in which 23% of the cases are related to spinal cord injury (SCI). Miniaturized closed-loop neural interfaces have the potential for restoring function and mobility lost to debilitating neural injuries such as SCI by leveraging recent advancements in bioelectronics and a better understanding of the processes that underlie functional and anatomical reorganization in an injured nervous system. This paper describes our current progress towards developing a miniaturized brain-machine-spinal cord interface (BMSI) that is envisioned to convert in real time the neural command signals recorded from the brain to electrical stimuli delivered to the spinal cord below the injury level. Specifically, the paper reports on a corticospinal interface integrated circuit (IC) as a core building block for such a BMSI that is capable of low-noise recording of extracellular neural spikes from the cerebral cortex as well as muscle activation using intraspinal microstimulation (ISMS) in a rat with contusion injury to the thoracic spinal cord. The paper further presents results from a neurobiological study conducted in both normal and SCI rats to investigate the effect of various ISMS parameters on movement thresholds in the rat hindlimb. Coupled with proper signal-processing algorithms in the future for the transformation between the cortically recorded data and ISMS parameters, such a BMSI has the potential to facilitate functional recovery after an SCI by re-establishing corticospinal communication channels lost due to the injury.
Keywords
brain-computer interfaces; injuries; neurophysiology; patient rehabilitation; BMSI; ISMS; SCI rats; brain-machine-spinal cord interface; cerebral cortex; contusion injury; core building block; corticospinal interface integrated circuit; electrical stimuli; extracellular neural spikes; function restoration; intraspinal microstimulation; low-noise recording; muscle activation; neural command signals; neurobiological study; normal rats; rat hindlimb; signal-processing algorithms; spinal cord injury; thoracic spinal cord; In vivo; Injuries; Integrated circuits; Muscles; Rats; Spinal cord injury;
fLanguage
English
Publisher
ieee
Conference_Titel
Engineering in Medicine and Biology Society (EMBC), 2014 36th Annual International Conference of the IEEE
Conference_Location
Chicago, IL
ISSN
1557-170X
Type
conf
DOI
10.1109/EMBC.2014.6943634
Filename
6943634
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