scholarly article | Q13442814 |
P50 | author | R. Chris Miall | Q25855463 |
P2093 | author name string | Edwin M Robertson | |
Neil B Albert | |||
P2860 | cites work | From creation to consolidation: a novel framework for memory processing | Q21145861 |
A default mode of brain function | Q24544311 | ||
Consistent resting-state networks across healthy subjects | Q24673419 | ||
The human brain is intrinsically organized into dynamic, anticorrelated functional networks | Q27860802 | ||
Probabilistic independent component analysis for functional magnetic resonance imaging | Q29617076 | ||
A default mode of brain function: a brief history of an evolving idea | Q29619033 | ||
Electrophysiological correlates of the brain's intrinsic large-scale functional architecture | Q30484012 | ||
Consolidation of motor memory | Q30493252 | ||
Offline persistence of memory-related cerebral activity during active wakefulness | Q30501244 | ||
Off-line learning of motor skill memory: a double dissociation of goal and movement | Q30541656 | ||
Distinct contribution of the cortico-striatal and cortico-cerebellar systems to motor skill learning | Q30750434 | ||
Practice with sleep makes perfect: sleep-dependent motor skill learning | Q34139492 | ||
Awareness modifies the skill-learning benefits of sleep | Q34294732 | ||
Consolidation in human motor memory | Q34389627 | ||
Neural Correlates of Motor Memory Consolidation | Q34434193 | ||
fMRI resting state networks define distinct modes of long-distance interactions in the human brain | Q34464062 | ||
Neural correlates of reach errors | Q34684032 | ||
Current concepts in procedural consolidation | Q35811916 | ||
Electrophysiological signatures of resting state networks in the human brain. | Q35928916 | ||
Motor learning in man: a review of functional and clinical studies | Q36490888 | ||
Role of posterior parietal cortex in the recalibration of visually guided reaching | Q39171657 | ||
Learning to discriminate complex movements: biological versus artificial trajectories | Q47191922 | ||
Adaptation to rotated visual feedback: a re-examination of motor interference | Q48149404 | ||
Cerebellar lesions and prism adaptation in macaque monkeys | Q48238356 | ||
Functional imaging: is the resting brain resting? | Q48349798 | ||
Fronto-parieto-cerebellar interaction associated with intermanual transfer of monkey tool-use learning | Q48375540 | ||
The role of the posterior parietal lobe in prism adaptation: Failure to adapt to optical prisms in a patient with bilateral damage to posterior parietal cortex | Q48446815 | ||
The human dorsal premotor cortex generates on-line error corrections during sensorimotor adaptation. | Q48608069 | ||
Ipsidirectional impairment of prism adaptation after unilateral lesion of anterior cerebellum. | Q48810431 | ||
Functional imaging of changes in cerebellar activity related to learning during a novel eye-hand tracking task | Q48947257 | ||
Throwing while looking through prisms. I. Focal olivocerebellar lesions impair adaptation | Q48954075 | ||
One memory, two ways to consolidate? | Q51972262 | ||
Kinematics and dynamics are not represented independently in motor working memory: evidence from an interference study. | Q52014658 | ||
Prism adaptation during walking generalizes to reaching and requires the cerebellum | Q52089191 | ||
Adaptation to a visuomotor shift depends on the starting posture | Q52116386 | ||
Human cerebellar activity reflecting an acquired internal model of a new tool | Q52171465 | ||
P433 | issue | 12 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 1023-1027 | |
P577 | publication date | 2009-05-07 | |
P1433 | published in | Current Biology | Q1144851 |
P1476 | title | The resting human brain and motor learning | |
P478 | volume | 19 |
Q49109620 | 10,000 hours to perfection |
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Q50089629 | A Modulatory Effect of Brief Passive Exposure to Non-linguistic Sounds on Intrinsic Functional Connectivity: Relevance to Cognitive Performance |
Q54994907 | A New Analysis of Resting State Connectivity and Graph Theory Reveals Distinctive Short-Term Modulations due to Whisker Stimulation in Rats. |
Q48032729 | A New Modular Brain Organization of the BOLD Signal during Natural Vision. |
Q34635256 | A baseline for the multivariate comparison of resting-state networks |
Q27009153 | A brief history of the resting state: The Washington University perspective |
Q48330289 | Abnormal regional homogeneity and functional connectivity in adjustment disorder of new recruits: a resting-state fMRI study |
Q36068436 | Abnormalities in personal space and parietal-frontal function in schizophrenia |
Q37231585 | Accelerated long-term forgetting in aging and intra-sleep awakenings |
Q62573757 | Adaptive and Maladaptive Neural Plasticity Due to Facial Nerve Palsy |
Q33560743 | Advances and pitfalls in the analysis and interpretation of resting-state FMRI data |
Q34802786 | Age differences in interhemispheric interactions: callosal structure, physiological function, and behavior |
Q35063653 | Age differences in the default network at rest and the relation to self-referential processing |
Q50330686 | Age-Dependent Modulations of Resting State Connectivity Following Motor Practice. |
Q48482355 | Age-related differences in practice-dependent resting-state functional connectivity related to motor sequence learning |
Q31054589 | Alterations in Cortical Sensorimotor Connectivity following Complete Cervical Spinal Cord Injury: A Prospective Resting-State fMRI Study |
Q30432046 | Alterations in resting functional connectivity due to recent motor task |
Q60909907 | Altered Central Autonomic Network in Baseball Players: A Resting-state fMRI Study |
Q35194434 | Altered baseline brain activity in experts measured by amplitude of low frequency fluctuations (ALFF): a resting state fMRI study using expertise model of acupuncturists. |
Q30557971 | Altered resting brain function and structure in professional badminton players. |
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Q34203099 | Biophysical Modulations of Functional Connectivity |
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Q37344379 | Cerebellar BOLD signal during the acquisition of a new lexicon predicts its early consolidation |
Q35508566 | Changes in functional connectivity and GABA levels with long-term motor learning |
Q30566914 | Changes in neural resting state activity in primary and higher-order motor areas induced by a short sensorimotor intervention based on the Feldenkrais method |
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Q34336175 | Clustering of resting state networks |
Q37864365 | Concepts and principles in the analysis of brain networks |
Q34513987 | Consensus Paper: Towards a Systems-Level View of Cerebellar Function: the Interplay Between Cerebellum, Basal Ganglia, and Cortex |
Q47611105 | Consolidation Promotes the Emergence of Representational Overlap in the Hippocampus and Medial Prefrontal Cortex |
Q34883982 | Consolidation in older adults depends upon competition between resting-state networks |
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Q30495380 | Correlated low-frequency BOLD fluctuations in the resting human brain are modulated by recent experience in category-preferential visual regions |
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Q48349827 | Disrupted resting-state functional connectivity and its changing trend in migraine suffers. |
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Q37739544 | Dynamic Default Mode Network across Different Brain States |
Q30554308 | Dynamic functional connectivity: promise, issues, and interpretations |
Q27336490 | Dynamic reconfiguration of the default mode network during narrative comprehension |
Q30394993 | Dynamic resting state functional connectivity in awake and anesthetized rodents |
Q24612737 | Early visual learning induces long-lasting connectivity changes during rest in the human brain |
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Q39687907 | Functional brain connectivity at rest changes after working memory training |
Q37993505 | Functional connectivity and neurological recovery |
Q50436069 | Functional connectivity between somatosensory and motor brain areas predicts individual differences in motor learning by observing. |
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Q35679633 | Functionally specific changes in resting-state sensorimotor networks after motor learning. |
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