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One or more keywords matched the following items that are connected to Beck, Travis
Item TypeName
Concept Electrodes
Academic Article The effects of interelectrode distance on electromyographic amplitude and mean power frequency during incremental cycle ergometry.
Academic Article The effects of innervation zone on electromyographic amplitude and mean power frequency during incremental cycle ergometry.
Academic Article The effects of the innervation zone and interelectrode distance on the patterns of responses for electromyographic amplitude and mean power frequency versus isometric torque for the vastus lateralis muscle.
Academic Article The effects of electrode placement and innervation zone location on the electromyographic amplitude and mean power frequency versus isometric torque relationships for the vastus lateralis muscle.
Academic Article The effect of the estimated innervation zone on EMG amplitude and center frequency.
Academic Article The influence of electrode placement over the innervation zone on electromyographic amplitude and mean power frequency versus isokinetic torque relationships.
Academic Article The effects of interelectrode distance over the innervation zone and normalization on the electromyographic amplitude and mean power frequency versus concentric, eccentric, and isometric torque relationships for the vastus lateralis muscle.
Academic Article Electrode placement over the innervation zone affects the low-, not the high-frequency portion of the EMG frequency spectrum.
Academic Article Electrode shift and normalization reduce the innervation zone's influence on EMG.
Academic Article The effects of interelectrode distance on electromyographic amplitude and mean power frequency during isokinetic and isometric muscle actions of the biceps brachii.
Academic Article The influence of electrode shift over the innervation zone and normalization on the electromyographic amplitude and mean power frequency versus isometric torque relationships for the vastus medialis muscle.
Academic Article An examination of the linearity and reliability of the electromyographic amplitude versus dynamic constant external resistance relationships using monopolar and bipolar recording methods.
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