This magnetoencephalography study investigates how ageing modulates the relationship between pre-learning resting-state functional connectivity (rsFC) and subsequent learning. Neuromagnetic resting-state activity was recorded 5 min before motor sequence learning in 14 young (19-30 years) and 14 old (66-70 years) participants. We used a seed-based beta-band power envelope correlation approach to estimate rsFC maps, with the seed located in the right primary sensorimotor cortex. In each age group, the relation between individual rsFC and learning performance was investigated using Pearson's correlation analyses. Our results show that rsFC is predictive of subsequent motor sequence learning but involves different cross-network interactions in ...
Growing evidence suggests that healthy aging affects the configuration of large-scale functional bra...
The dorsolateral prefrontal cortex (DLPFC) is a critical substrate for motor learning. However, how ...
The dorsolateral prefrontal cortex (DLPFC) is a critical substrate for motor learning. However, how ...
Decreased neural plasticity is observed with healthy ageing in the primary sensorimotor (SM1) cortex...
Recent work in young adults has demonstrated that motor learning can modulate resting state function...
Recent work in young adults has demonstrated that motor learning can modulate resting state function...
Aging is associated with impaired motor performance across a range of tasks. Both primary neural rep...
Both increases and decreases in resting state functional connectivity have been previously observed ...
Recent work in young adults has demonstrated that motor learning can modulate resting state function...
Both increases and decreases in resting state functional connectivity have been previously observed ...
Background:Resting-state recordings are characterized by widely distributed networks of coherent bra...
Older individuals typically display stronger regional brain activity than younger subjects during mo...
Background: Resting-state recordings are characterized by widely distributed networks of coherent br...
Objective: Age-related differences in neural strategies for motor learning are not fully understood....
Deterioration in working memory capacity (WMC) has been associated with normal aging, but it remains...
Growing evidence suggests that healthy aging affects the configuration of large-scale functional bra...
The dorsolateral prefrontal cortex (DLPFC) is a critical substrate for motor learning. However, how ...
The dorsolateral prefrontal cortex (DLPFC) is a critical substrate for motor learning. However, how ...
Decreased neural plasticity is observed with healthy ageing in the primary sensorimotor (SM1) cortex...
Recent work in young adults has demonstrated that motor learning can modulate resting state function...
Recent work in young adults has demonstrated that motor learning can modulate resting state function...
Aging is associated with impaired motor performance across a range of tasks. Both primary neural rep...
Both increases and decreases in resting state functional connectivity have been previously observed ...
Recent work in young adults has demonstrated that motor learning can modulate resting state function...
Both increases and decreases in resting state functional connectivity have been previously observed ...
Background:Resting-state recordings are characterized by widely distributed networks of coherent bra...
Older individuals typically display stronger regional brain activity than younger subjects during mo...
Background: Resting-state recordings are characterized by widely distributed networks of coherent br...
Objective: Age-related differences in neural strategies for motor learning are not fully understood....
Deterioration in working memory capacity (WMC) has been associated with normal aging, but it remains...
Growing evidence suggests that healthy aging affects the configuration of large-scale functional bra...
The dorsolateral prefrontal cortex (DLPFC) is a critical substrate for motor learning. However, how ...
The dorsolateral prefrontal cortex (DLPFC) is a critical substrate for motor learning. However, how ...