Rectification of EMG in low force contractions improves detection of motor unit coherence in the beta-frequency band.
نویسندگان
چکیده
Rectification of surface EMG before spectral analysis is a well-established preprocessing method used in the detection of motor unit firing patterns. A number of recent studies have called into question the need for rectification before spectral analysis, pointing out that there is no supporting experimental evidence to justify rectification. We present an analysis of 190 records from 13 subjects consisting of simultaneous recordings of paired single motor units and surface EMG from the extensor digitorum longus muscle during middle finger extension against gravity (unloaded condition) and against gravity plus inertial loading (loaded condition). We directly examine the hypothesis that rectified surface EMG is a better predictor of the frequency components of motor unit synchronization than the unrectified (or raw) EMG in the beta-frequency band (15-32 Hz). We use multivariate analysis and estimate the partial coherence between the paired single units using both rectified and unrectified surface EMG as a predictor. We use a residual partial correlation measure to quantify the difference between raw and rectified EMG as predictor and analyze unloaded and loaded conditions separately. The residual correlation for the unloaded condition is 22% with raw EMG and 3.5% with rectified EMG and for the loaded condition it is 5.2% with raw EMG and 1.4% with rectified EMG. We interpret these results as strong supporting experimental evidence in favor of using the preprocessing step of surface EMG rectification before spectral analysis.
منابع مشابه
Rectification of EMG improves detection of motor unit coherence in the beta frequency band
Rectification of surface EMG prior to spectral analysis is a well established pre-processing method used in the detection of motor unit firing patterns. A number of recent studies have called into question the need for rectification prior to spectral analysis, pointing out that there is no supporting experimental evidence to justify rectification. We present an analysis of 190 records from 13 s...
متن کاملMuscle fatigue increases beta-band coherence between the firing times of simultaneously active motor units in the first dorsal interosseous muscle.
Synchronization between the firing times of simultaneously active motor units (MUs) is generally assumed to increase during fatiguing contractions. To date, however, estimates of MU synchronization have relied on indirect measures, derived from surface electromyographic (EMG) interference signals. This study used intramuscular coherence to investigate the correlation between MU discharges in th...
متن کاملEMG rectification has inconsistent effects on coherence analysis even in single motor unit studies.
TO THE EDITOR: We read with interest the article by Ward et al. (2013). Several groups question the use of electromyogram (EMG) rectification in calculating corticomuscular coherence (McClelland et al. 2012; Neto and Christou 2010; Stegeman et al. 2010), and Farina et al. (2013) demonstrate the inconsistent effects of rectification across different levels of muscle activation, relating to ampli...
متن کاملمعرفی روش استفاده از سیگنال مکانومیوگرام در ارزیابی عملکرد عضلات
Background and aims Recordings of electrical activity in the muscle and surface electromyography (EMG) have been widely used in the field of applied physiology. In parallel to recording of the EMG, the detectable low-frequency vibration signal generated by the skeletal muscle has been known and well documented. As the nature of the signal has been progressively revealed, the term of mec...
متن کاملExperimental muscle pain increases variability of neural drive to muscle and decreases motor unit coherence in tremor frequency band.
It has been observed that muscle pain influences force variability and low-frequency (<3 Hz) oscillations in the neural drive to muscle. In this study, we aimed to investigate the effect of experimental muscle pain on the neural control of muscle force at higher frequency bands, associated with afferent feedback (alpha band, 5-13 Hz) and with descending cortical input (beta band, 15-30 Hz). Sin...
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ورودعنوان ژورنال:
- Journal of neurophysiology
دوره 110 8 شماره
صفحات -
تاریخ انتشار 2013