An Unsorted Spike-Based Pattern Recognition Method for Real-Time Continuous Sensory Event Detection from Dorsal Root Ganglion Recording

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초록

In functional neuromuscular stimulation systems, sensory information-based closed-loop control can be useful for restoring lost function in patients with hemiplegia or quadriplegia. The goal of this study was to detect sensory events from tactile afferent signals continuously in real time using a novel unsorted spike-based pattern recognition method. The tactile afferent signals were recorded with a 16-channel microelectrode in the dorsal root ganglion, and unsorted spike-based feature vectors were extracted as a novel combination of the time and time-frequency domain features. Principal component analysis was used to reduce the dimensionality of the feature vectors, and a multilayer perceptron classifier was used to detect sensory events. The proposed method showed good performance for classification accuracy, and the processing time delay of sensory event detection was less than 200 ms. These results indicated that the proposed method could be applicable for sensory feedback in closed-loop control systems. © 2015 IEEE.

키워드

Pattern recognition; sensory event detection; sensory feedback; unsorted spike; Biomedical signal processing; Delay control systems; Frequency domain analysis; Microelectrodes; Pattern recognition; Principal component analysis; Sensory analysis; Sensory feedback; Signal detection; Time delay; Classification accuracy; Closed-loop control; Event detection; Functional neuromuscular stimulation; Multi-layer perceptron classifiers; Pattern recognition method; Time frequency domain; unsorted spike; Closed loop control systems; animal cell; animal experiment; Article; firing rate; male; mechanical stimulation; microelectrode; nonhuman; principal component analysis; rat; saphenous nerve; sciatic nerve; sensory feedback; signal processing; spike; spinal ganglion; tactile feedback; unsorted spike based pattern recognition; action potential; animal; biological model; nerve tract; pattern recognition; physical stimulation; physiology; sensory feedback; spinal ganglion; Sprague Dawley rat; Action Potentials; Animals; Feedback, Sensory; Ganglia, Spinal; Male; Models, Neurological; Neural Pathways; Pattern Recognition, Physiological; Physical Stimulation; Principal Component Analysis; Rats; Rats, Sprague-Dawley
제목
An Unsorted Spike-Based Pattern Recognition Method for Real-Time Continuous Sensory Event Detection from Dorsal Root Ganglion Recording
저자
Han, Sungmin; Chu, Jun-Uk; Kim, Hyungmin; Choi, Kuiwon; Park, Jong Woong; Youn, Inchan
DOI
10.1109/TBME.2015.2490739
발행일
2016-06
유형
Article
저널명
IEEE Transactions on Biomedical Engineering
권
63
호
6
페이지
1310 ~ 1320