DocumentCode :
663257
Title :
Novel time-frequency-eigen filter for intraoperative neurophysiologic monitoring in spinal surgeries
Author :
Vedala, Krishnatej ; Motahari, S. M. Amin ; Goryawala, Mohammed ; Cabrerizo, Mercedes ; Yaylali, Ilker ; Adjouadi, Malek
Author_Institution :
Center for Adv. Technol. & Educ., FIU Coll. of Eng. & Comput., Miami, FL, USA
fYear :
2013
fDate :
6-8 Nov. 2013
Firstpage :
1578
Lastpage :
1581
Abstract :
We present a novel signal-processing algorithm to extract the posterior tibial somatosensory evoked potentials (tSSEP) using a minimum number of trials. We analyze the proposed algorithm and compare it with the clinically used conventional signal averaging method for 12 surgical procedures. The tSSEP trials are continuously fed to our processing algorithm that displays the extracted SSEP after processing 12 successive unrejected sweeps. A unique filtering process employing time, frequency and eigen systems, in that order, was used to extract the SSEP from this set of 12 trials. The algorithm then detects, marks and records the P37 and N45 peaks using the first order differentials obtained through Walsh transformation. The monitoring using the algorithm was successful and proved conclusive to the clinical information through the different surgical procedures. Higher accuracy and faster execution time in determining the SSEP signals provides for a much improved and effective neurophysiological monitoring process.
Keywords :
Walsh functions; bioelectric potentials; eigenvalues and eigenfunctions; feature extraction; filtering theory; medical signal detection; neurophysiology; patient monitoring; surgery; time-frequency analysis; N45 peak; P37 peak; SSEP extraction; Walsh transformation; clinical information; conventional signal averaging method; eigen systems; first order differentials; intraoperative neurophysiologic monitoring; posterior tibial somatosensory evoked potential extraction; signal detection; signal-processing algorithm; spinal surgeries; surgical procedures; tSSEP trials; time-frequency-eigen filter; unique filtering process; unrejected sweeps; Accuracy; Algorithm design and analysis; Educational institutions; Monitoring; Neurophysiology; Standards; Surgery;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Neural Engineering (NER), 2013 6th International IEEE/EMBS Conference on
Conference_Location :
San Diego, CA
ISSN :
1948-3546
Type :
conf
DOI :
10.1109/NER.2013.6696249
Filename :
6696249
Link To Document :
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