<p>(A) Pooled spectral profiles of un-rectified and rectified EMG, (B) The means and standard errors of standardized amplitude for 8–12 Hz and 35–50 Hz spectral peaks. (Post-hoc test: <sup>*</sup>: Dynamic > Static, <i>P</i><.05; <sup>††</sup>: Static > Dynamic, <i>P</i><.01;<sup> †</sup>: Static > Dynamic, <i>P</i><.05).</p
<p>(A) Feature extraction of force intermittency profile and primary movements from force outputs of...
Electromyography (EMG) signal is non-stationary signal and highly complex time and frequency charact...
<p>A: pooled (n = 8) coherence plots for each stimulus condition. B: pooled (n = 8) gain plots for e...
<p>(A) Pooled spectral distributions of force intermittency profile during static and dynamic force-...
1<p>Values were presented as mean ± se.</p>2<p>Post-hoc for static force-tracking vs. dynamic force-...
<p>For plot A, mean force values were subtracted from the force signals and force data were low pass...
Frequency shifts in random signals, e.g., EMG or Doppler ultrasound, can be followed by monitoring o...
<p>A: pooled (n = 8) power spectrum of EMG (top plots) and AP force (bottom plots) during the MVS-4 ...
<p>Spectral profiles of force pulse trace for two typical subjects are shown in the left plots. Fati...
<p>(A) Simple protocol, (B) Complex protocol, and (C) Random protocol. Visible changes in higher fre...
Vibration exercise (VE) has been suggested for effective muscle training and conditioning. Surface e...
Many studies have proposed vibration exercise (VE) as a novel training modality for neuromuscular co...
<p>A) Representative example of a force and an EMG burst oscillations signal for 20 s. It is obvious...
<p>A) The force task (left column) and its corresponding interference EMG (right column). B) The for...
low force contractions improves detection of motor unit coherence in the beta-frequency band. J Neur...
<p>(A) Feature extraction of force intermittency profile and primary movements from force outputs of...
Electromyography (EMG) signal is non-stationary signal and highly complex time and frequency charact...
<p>A: pooled (n = 8) coherence plots for each stimulus condition. B: pooled (n = 8) gain plots for e...
<p>(A) Pooled spectral distributions of force intermittency profile during static and dynamic force-...
1<p>Values were presented as mean ± se.</p>2<p>Post-hoc for static force-tracking vs. dynamic force-...
<p>For plot A, mean force values were subtracted from the force signals and force data were low pass...
Frequency shifts in random signals, e.g., EMG or Doppler ultrasound, can be followed by monitoring o...
<p>A: pooled (n = 8) power spectrum of EMG (top plots) and AP force (bottom plots) during the MVS-4 ...
<p>Spectral profiles of force pulse trace for two typical subjects are shown in the left plots. Fati...
<p>(A) Simple protocol, (B) Complex protocol, and (C) Random protocol. Visible changes in higher fre...
Vibration exercise (VE) has been suggested for effective muscle training and conditioning. Surface e...
Many studies have proposed vibration exercise (VE) as a novel training modality for neuromuscular co...
<p>A) Representative example of a force and an EMG burst oscillations signal for 20 s. It is obvious...
<p>A) The force task (left column) and its corresponding interference EMG (right column). B) The for...
low force contractions improves detection of motor unit coherence in the beta-frequency band. J Neur...
<p>(A) Feature extraction of force intermittency profile and primary movements from force outputs of...
Electromyography (EMG) signal is non-stationary signal and highly complex time and frequency charact...
<p>A: pooled (n = 8) coherence plots for each stimulus condition. B: pooled (n = 8) gain plots for e...