Learning motor skills involves subsequent modulation of resting-state functional connectivity in the sensory-motor system. This idea was mostly derived from the investigations on motor execution learning which mainly recruits the processing of sensory-motor information. Behavioral evidences demonstrated that motor skills in our daily lives could be learned through imagery procedures. However, it remains unclear whether the modulation of resting-state functional connectivity also exists in the sensory-motor system after motor imagery learning.We performed a fMRI investigation on motor imagery learning from resting state. Based on previous studies, we identified eight sensory and cognitive resting-state networks (RSNs) corresponding to the br...
Motor imagery (MI) relies on the mental simulation of an action without any overt motor execution (M...
Motor imagery (MI) relies on the mental simulation of an action without any overt motor execution (M...
Motor imagery (MI) relies on the mental simulation of an action without any overt motor execution (M...
Learning motor skills involves subsequent modulation of resting-state functional connectivity in the...
Background: Learning motor skills involves subsequent modulation of resting-state functional connect...
BACKGROUND: Learning motor skills involves subsequent modulation of resting-state functional connect...
Neural substrates underlying motor learning have been widely investigated with neuroimaging technolo...
Neural substrates underlying motor learning have been widely investigated with neuroimaging technolo...
<div><h3>Background</h3><p>Neural substrates underlying motor learning have been widely investigated...
Motor learning changes the activity of cortical motor and subcortical areas of the brain, but does l...
Background: Neural substrates underlying motor learning have been widely investigated with neuroimag...
SummaryFunctionally related brain networks are engaged even in the absence of an overt behavior. The...
Functionally related brain networks are engaged even in the absence of an overt behavior. The role o...
Functionally related brain networks are engaged even in the absence of an overt behavior. The role o...
Motor imagery (MI) relies on the mental simulation of an action without any overt motor execution (M...
Motor imagery (MI) relies on the mental simulation of an action without any overt motor execution (M...
Motor imagery (MI) relies on the mental simulation of an action without any overt motor execution (M...
Motor imagery (MI) relies on the mental simulation of an action without any overt motor execution (M...
Learning motor skills involves subsequent modulation of resting-state functional connectivity in the...
Background: Learning motor skills involves subsequent modulation of resting-state functional connect...
BACKGROUND: Learning motor skills involves subsequent modulation of resting-state functional connect...
Neural substrates underlying motor learning have been widely investigated with neuroimaging technolo...
Neural substrates underlying motor learning have been widely investigated with neuroimaging technolo...
<div><h3>Background</h3><p>Neural substrates underlying motor learning have been widely investigated...
Motor learning changes the activity of cortical motor and subcortical areas of the brain, but does l...
Background: Neural substrates underlying motor learning have been widely investigated with neuroimag...
SummaryFunctionally related brain networks are engaged even in the absence of an overt behavior. The...
Functionally related brain networks are engaged even in the absence of an overt behavior. The role o...
Functionally related brain networks are engaged even in the absence of an overt behavior. The role o...
Motor imagery (MI) relies on the mental simulation of an action without any overt motor execution (M...
Motor imagery (MI) relies on the mental simulation of an action without any overt motor execution (M...
Motor imagery (MI) relies on the mental simulation of an action without any overt motor execution (M...
Motor imagery (MI) relies on the mental simulation of an action without any overt motor execution (M...