Neural Substrates Related to Motor Memory with Multiple Timescales in Sensorimotor Adaptation
Adult
Male
Memory, Long-Term
QH301-705.5
Models, Neurological
Functional Laterality
Young Adult
03 medical and health sciences
0302 clinical medicine
Parietal Lobe
Humans
Biology (General)
Neurons
Brain Mapping
Middle Aged
Adaptation, Physiological
Magnetic Resonance Imaging
Kinetics
Memory, Short-Term
Cerebellar Nuclei
Multivariate Analysis
Female
Sensorimotor Cortex
Psychomotor Performance
Research Article
DOI:
10.1371/journal.pbio.1002312
Publication Date:
2015-12-09T07:38:18Z
AUTHORS (5)
ABSTRACT
Recent computational and behavioral studies suggest that motor adaptation results from the update of multiple memories with different timescales. Here, we designed a model-based functional magnetic resonance imaging (fMRI) experiment in which subjects adapted to two opposing visuomotor rotations. A computational model of motor adaptation with multiple memories was fitted to the behavioral data to generate time-varying regressors of brain activity. We identified regional specificity to timescales: in particular, the activity in the inferior parietal region and in the anterior-medial cerebellum was associated with memories for intermediate and long timescales, respectively. A sparse singular value decomposition analysis of variability in specificities to timescales over the brain identified four components, two fast, one middle, and one slow, each associated with different brain networks. Finally, a multivariate decoding analysis showed that activity patterns in the anterior-medial cerebellum progressively represented the two rotations. Our results support the existence of brain regions associated with multiple timescales in adaptation and a role of the cerebellum in storing multiple internal models.
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