Central fatigue and motor cortical excitability during repeated shortening and lengthening actions
- 7 May 2002
- journal article
- clinical trial
- Published by Wiley in Muscle & Nerve
- Vol. 25 (6) , 864-872
- https://doi.org/10.1002/mus.10124
Abstract
A decline in voluntary muscle activation and adaptations in motor cortical excitability contribute to the progressive decline in voluntary force during sustained isometric contractions. However, the neuronal control of muscle activation differs between isometric and dynamic contractions. This study was designed to investigate voluntary activation, motor cortex excitability, and intracortical inhibition during fatiguing concentric and eccentric actions. Eight subjects performed 143 torque motor–controlled, repeated shortening and lengthening actions of the elbow flexor muscles. Transcranial magnetic stimulation (TMS) was applied three times every 20 cycles. Magnetic evoked motor potentials (MEP), duration of the silent period (SP), and the torque increase due to TMS were analyzed. TMS resulted in a small torque increase in unfatigued actions. With repeated actions, voluntary torque dropped rapidly and the amplitude of the TMS‐induced twitches increased, especially during repeated lengthening actions. MEP area of biceps brachii and brachioradialis muscles increased during repeated actions to a similar extent during lengthening and shortening fatigue. The duration of biceps and brachioradialis SP did not change with fatigue. Thus, voluntary activation became suboptimal during fatiguing dynamic actions and motor cortex excitability increased without any changes in intracortical inhibition. The apparent dissociation of voluntary activation and motor cortex excitability suggests that the central fatigue observed, especially during lengthening actions, did not result from changes in motor cortex excitability. © 2002 Wiley Periodicals, Inc. Muscle Nerve 25: 000–000, 2002Keywords
This publication has 47 references indexed in Scilit:
- Ischaemia after exercise does not reduce responses of human motoneurones to cortical or corticospinal tract stimulationThe Journal of Physiology, 2000
- Impaired response of human motoneurones to corticospinal stimulation after voluntary exerciseThe Journal of Physiology, 1999
- Voluntary activation of human elbow flexor muscles during maximal concentric contractionsThe Journal of Physiology, 1998
- Recurrent inhibition of soleus α-motoneurons during a sustained submaximal plantar flexionElectroencephalography and Clinical Neurophysiology/Electromyography and Motor Control, 1996
- Central changes in muscle fatigue during sustained submaximal isometric voluntary contraction as revealed by transcranial magnetic stimulationElectroencephalography and Clinical Neurophysiology/Electromyography and Motor Control, 1996
- Effect of fatiguing maximal voluntary contraction on excitatory and inhibitory responses elicited by transcranial magnetic motor cortex stimulationMuscle & Nerve, 1996
- The Validity of Isokinetic Knee Extensor Endurance Measurements with Reference to Treadmill Running CapacitiesInternational Journal of Sports Medicine, 1996
- Motor unit recruitment pattern during low‐level static and dynamic contractionsMuscle & Nerve, 1995
- On the origin of the postexcitatory inhibition seen after transcranial magnetic brain stimulation in awake human subjectsExperimental Brain Research, 1993
- Effects of fatigue on the stretch reflex in a human muscleElectroencephalography and Clinical Neurophysiology/Evoked Potentials Section, 1992