Corticospinal excitability remains unchanged in the presence of residual force enhancement and does not contribute to increased torque production

Author:

Frischholz Jasmin1,Raiteri Brent J.1,Cresswell Andrew G.2,Hahn Daniel12

Affiliation:

1. Human Movement Science, Faculty of Sport Science, Ruhr University Bochum, Bochum, Germany

2. School of Human Movement and Nutrition Sciences, University of Queensland, Brisbane, Australia

Abstract

Background Following stretch of an active muscle, muscle force is enhanced, which is known as residual force enhancement (rFE). As earlier studies found apparent corticospinal excitability modulations in the presence of rFE, this study aimed to test whether corticospinal excitability modulations contribute to rFE. Methods Fourteen participants performed submaximal plantar flexion stretch-hold and fixed-end contractions at 30% of their maximal voluntary soleus muscle activity in a dynamometer. During the steady state of the contractions, participants either received subthreshold or suprathreshold transcranial magnetic stimulation (TMS) of their motor cortex, while triceps surae muscle responses to stimulation were obtained via electromyography (EMG), and net ankle joint torque was recorded. B-mode ultrasound imaging was used to confirm muscle fascicle stretch during stretch-hold contractions in a subset of participants. Results Following stretch of the plantar flexors, an average rFE of 7% and 11% was observed for contractions with subthreshold and suprathreshold TMS, respectively. 41–46 ms following subthreshold TMS, triceps surae muscle activity was suppressed by 19–25%, but suppression was not significantly different between stretch-hold and fixed-end contractions. Similarly, the reduction in plantar flexion torque following subthreshold TMS was not significantly different between contraction conditions. Motor evoked potentials, silent periods and superimposed twitches following suprathreshold TMS were also not significantly different between contraction conditions. Discussion As TMS of the motor cortex did not result in any differences between stretch-hold and fixed-end contractions, we conclude that rFE is not linked to changes in corticospinal excitability.

Publisher

PeerJ

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

Reference41 articles.

1. The force exerted by active striated muscle during and after change of length;Abbott;The Journal of Physiology,1952

2. Vastus lateralis surface and single motor unit EMG following submaximal shortening and lengthening contractions;Altenburg;Applied Physiology, Nutrition, and Metabolism,2008

3. An optimal protocol for measurement of corticospinal excitability, short intracortical inhibition and intracortical facilitation in the rectus femoris;Brownstein;Journal of the Neurological Sciences,2018

4. Skeletal muscle resists stretch by rapid binding of the second motor domain of myosin to actin;Brunello;Proceedings of the National Academy of Sciences of the United States of America,2007

5. Residual force enhancement in humans: a systematic review;Chapman;Journal of Applied Biomechanics,2018

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