The effects of muscle fatigue are known to be altered in older adults, and age-related changes in the brain are likely to be a contributing factor. However, the neural mechanisms underlying these changes are not known. The aim of the current study was to use transcranial magnetic stimulation combined with electroencephalography (TMS-EEG) to investigate age-related changes in cortical excitability with muscle fatigue. In 23 young (mean age ± SD: 22 ± 2 years) and 17 older (mean age ± SD: 68.3 ± 5.6 years) adults, single-pulse TMS-EEG was applied before, during and after the performance of fatiguing, intermittent isometric abduction of the index finger. Motor-evoked potential (MEP) measures of cortical excitability were increased during (esti...
Numerous studies have reported that plasticity induced in the motor cortex by transcranial magnetic ...
The sensorimotor cortical system undergoes structural and functional changes across its lifespan. So...
Dual-site transcranial magnetic stimulation (TMS) can be used to measure the cerebellar inhibitory i...
Background: Alterations in inhibitory processes mediated by gamma-aminobutyric acid type B (GABAB) r...
This study compared the contribution of supraspinal fatigue to muscle fatigue in old and young adult...
Healthy aging is associated with deterioration of the sensorimotor system, which impairs balance and...
Previous studies with transcranial magnetic stimulation (TMS) have shown that advancing age may infl...
Available online 20 May 2022Understanding age-related changes in cortical excitability and their rel...
Aging is associated with changes in the motor system that, over time, can lead to functional impairm...
ObjectiveAgeing is accompanied by diminished practice-dependent plasticity. We investigated the effe...
Aging is associated with changes in the motor system that, over time, can lead to functional impairm...
Aging is associated with reduced neuromuscular function, which may be due in part to altered cortico...
This study determined the contribution of supraspinal fatigue and contractile properties to the age ...
To determine whether aging is associated with changes in excitability of the cerebral cortex, we eva...
Acute bouts of exercise have been shown to improve fine motor control performance and to facilitate ...
Numerous studies have reported that plasticity induced in the motor cortex by transcranial magnetic ...
The sensorimotor cortical system undergoes structural and functional changes across its lifespan. So...
Dual-site transcranial magnetic stimulation (TMS) can be used to measure the cerebellar inhibitory i...
Background: Alterations in inhibitory processes mediated by gamma-aminobutyric acid type B (GABAB) r...
This study compared the contribution of supraspinal fatigue to muscle fatigue in old and young adult...
Healthy aging is associated with deterioration of the sensorimotor system, which impairs balance and...
Previous studies with transcranial magnetic stimulation (TMS) have shown that advancing age may infl...
Available online 20 May 2022Understanding age-related changes in cortical excitability and their rel...
Aging is associated with changes in the motor system that, over time, can lead to functional impairm...
ObjectiveAgeing is accompanied by diminished practice-dependent plasticity. We investigated the effe...
Aging is associated with changes in the motor system that, over time, can lead to functional impairm...
Aging is associated with reduced neuromuscular function, which may be due in part to altered cortico...
This study determined the contribution of supraspinal fatigue and contractile properties to the age ...
To determine whether aging is associated with changes in excitability of the cerebral cortex, we eva...
Acute bouts of exercise have been shown to improve fine motor control performance and to facilitate ...
Numerous studies have reported that plasticity induced in the motor cortex by transcranial magnetic ...
The sensorimotor cortical system undergoes structural and functional changes across its lifespan. So...
Dual-site transcranial magnetic stimulation (TMS) can be used to measure the cerebellar inhibitory i...