Literature DB >> 20526612

Teager-Kaiser energy operator signal conditioning improves EMG onset detection.

Stanislaw Solnik1, Patrick Rider, Ken Steinweg, Paul DeVita, Tibor Hortobágyi.   

Abstract

Accurate identification of the onset of muscle activity is an important element in the biomechanical analysis of human movement. The purpose of this study was to determine if inclusion of the Teager-Kaiser energy operator (TKEO) in signal conditioning would increase the accuracy of popular electromyography (EMG) onset detection methods. Three methods, visual determination, threshold-based method, and approximated generalized likelihood ratio were used to estimate the onset of EMG burst with and without TKEO conditioning. Reference signals, with known onset times, were constructed from EMG signals collected during isometric contraction of the vastus lateralis (n = 17). Additionally, vastus lateralis EMG signals (n = 255) recorded during gait were used to evaluate a clinical application of the TKEO conditioning. Inclusion of TKEO in signal conditioning significantly reduced mean detection error of all three methods compared with signal conditioning without TKEO, using artificially generated reference data (13 vs. 98 ms, p < 0.001) and also compared with experimental data collected during gait (55 vs. 124 ms, p < 0.001). In conclusion, addition of TKEO as a step in conditioning surface EMG signals increases the detection accuracy of EMG burst boundaries.

Entities:  

Mesh:

Year:  2010        PMID: 20526612      PMCID: PMC2945630          DOI: 10.1007/s00421-010-1521-8

Source DB:  PubMed          Journal:  Eur J Appl Physiol        ISSN: 1439-6319            Impact factor:   3.078


  31 in total

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7.  A new detection method for EMG activity monitoring.

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8.  Unsupervised Stochastic Strategies for Robust Detection of Muscle Activation Onsets in Surface Electromyogram.

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Journal:  IEEE Trans Neural Syst Rehabil Eng       Date:  2018-06       Impact factor: 3.802

9.  Wiener filtering of surface EMG with a priori SNR estimation toward myoelectric control for neurological injury patients.

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10.  Disrupted Cortical State Regulation in a Rat Model of Fragile X Syndrome.

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