SummaryThe cerebellum stores associative motor memories essential for properly timed movement; however, the mechanisms by which these memories form and are acted upon remain unclear. To determine how cerebellar activity relates to movement and motor learning, we used optogenetics to manipulate spontaneously firing Purkinje neurons (PNs) in mouse simplex lobe. Using high-speed videography and motion tracking, we found that altering PN activity produced rapid forelimb movement. PN inhibition drove movements time-locked to stimulus onset, whereas PN excitation drove delayed movements time-locked to stimulus offset. Pairing either PN inhibition or excitation with sensory stimuli triggered the formation of robust, associative motor memories; how...
The cerebellum (from the latin - little brain) is located at the posterior end of the brain. It is k...
The role of the cerebellum in movement control may involve the formation and storage of motor memori...
We develop a new model that explains how the cerebellum may generate the timing in classical delay e...
The cerebellum stores associative motor memories essential for properly timed movement; however, the...
The cerebellum stores associative motor memories essential for properly timed movement; however, the...
The cerebellum has long been hypothesized to be involved in the storage and expression of motor memo...
The cerebellum has long been hypothesized to be involved in the storage and expression of motor memo...
The cerebellum (from the latin - little brain) is located at the posterior end of the brain. It is k...
The cerebellum (from the latin - little brain) is located at the posterior end of the brain. It is k...
The cerebellum refines the accuracy and timing of motor performance. How it encodes information to p...
The cerebellum refines the accuracy and timing of motor performance. How it encodes information to p...
The cerebellum is an area of the brain that plays a crucial role in the learning of motor skills. Th...
textabstractThe cerebellum (from the latin - little brain) is located at the posterior end of the br...
The cerebellum is involved in the encoding and integration of spatial and temporal information. Alth...
The cerebellum is an area of the brain that plays a crucial role in the learning of motor skills. Th...
The cerebellum (from the latin - little brain) is located at the posterior end of the brain. It is k...
The role of the cerebellum in movement control may involve the formation and storage of motor memori...
We develop a new model that explains how the cerebellum may generate the timing in classical delay e...
The cerebellum stores associative motor memories essential for properly timed movement; however, the...
The cerebellum stores associative motor memories essential for properly timed movement; however, the...
The cerebellum has long been hypothesized to be involved in the storage and expression of motor memo...
The cerebellum has long been hypothesized to be involved in the storage and expression of motor memo...
The cerebellum (from the latin - little brain) is located at the posterior end of the brain. It is k...
The cerebellum (from the latin - little brain) is located at the posterior end of the brain. It is k...
The cerebellum refines the accuracy and timing of motor performance. How it encodes information to p...
The cerebellum refines the accuracy and timing of motor performance. How it encodes information to p...
The cerebellum is an area of the brain that plays a crucial role in the learning of motor skills. Th...
textabstractThe cerebellum (from the latin - little brain) is located at the posterior end of the br...
The cerebellum is involved in the encoding and integration of spatial and temporal information. Alth...
The cerebellum is an area of the brain that plays a crucial role in the learning of motor skills. Th...
The cerebellum (from the latin - little brain) is located at the posterior end of the brain. It is k...
The role of the cerebellum in movement control may involve the formation and storage of motor memori...
We develop a new model that explains how the cerebellum may generate the timing in classical delay e...