We found a match
Your institution may have access to this item. Find your institution then sign in to continue.
- Title
Strengthened Corticosubcortical Functional Connectivity during Muscle Fatigue.
- Authors
Jiang, Zhiguo; Wang, Xiao-Feng; Yue, Guang H.
- Abstract
The present study examined functional connectivity (FC) between functional MRI (fMRI) signals of the primary motor cortex (M1) and each of the three subcortical neural structures, cerebellum (CB), basal ganglia (BG), and thalamus (TL), during muscle fatigue using the quantile regression technique. Understanding activation relation between the subcortical structures and the M1 during prolonged motor performance should help delineate how central motor control network modulates acute perturbations at peripheral sensorimotor system such as muscle fatigue. Ten healthy subjects participated in the study and completed a 20-minute intermittent handgrip motor task at 50% of their maximal voluntary contraction (MVC) level. Quantile regression analyses were carried out to compare the FC between the contralateral (left) M1 and CB, BG, and TL in the minimal (beginning 100 s) versus significant (ending 100 s) fatigue stages. Widespread, statistically significant increases in FC were found in bilateral BG, CB, and TL with the left M1 during significant versus minimal fatigue stages. Our results imply that these subcortical nuclei are critical components in the motor control network and actively involved in modulating voluntary muscle fatigue, possibly, by working together with the M1 to strengthen the descending central command to prolong the motor performance.
- Subjects
MUSCLE fatigue; BRAIN imaging; MOTOR ability; NEURAL circuitry; MUSCLE strength; FUNCTIONAL magnetic resonance imaging; QUANTILE regression
- Publication
Neural Plasticity, 2016, p1
- ISSN
2090-5904
- Publication type
Article
- DOI
10.1155/2016/1726848