Preparation for movement: neural representations of intended direction in three motor areas of the monkey.
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Summary
Compared the functional properties of neurons in three interrelated motor areas that have been implicated in the planning and execution of visually guided limb movements, the majority of cells with task-related preparatory activity showed selective activation in anticipation of elbow movements in a particular direction.
- Type
- article
- Published
- 1990-07-01
- Cited by
- 747
- References
- 76
- OpenAlex
- https://openalex.org/W1508060730
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:18735330
Keywords
Movement (music), Neuroscience, Communication, Psychology, Computer science
References
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- Neural representations of the target (goal) of visually guided arm movements in three motor areas of the monkey.
- Brain Oscillations, Medium Spiny Neurons, and Dopamine
- BOLD coherence reveals segregated functional neural interactions when adapting to distinct torque perturbations.
- Velocity neurons improve performance more than goal or position neurons do in a simulated closed-loop BCI arm-reaching task
- Changes in activity of fast-spiking interneurons of the monkey striatum during reaching at a visual target.
- Ipsilateral Putamen and Insula Activation by Both Left and Right GB34 Acupuncture Stimulation: An fMRI Study on Healthy Participants
- Decoding motor intentions from human brain activity
- HOW ACCURATELY CAN WE PERCEIVE THE POSITIONS OF OUR LIMBS
- The behavioral and neurophysiologic effects of acute dopamine receptor blockade in the macaque striatum
- Posture and gait in diabetic distal symmetrical polyneuropathy
- Exploring the neural basis of top-down guided action in macaque monkeys
- Differentiating Self-Reported Imagery Abilities with Functional Magnetic Resonance Imaging
- Neural Networks and Motor Control
- Distinguishing neural sources of movement preparation and execution. An electrophysiological analysis.
- Towards a unified model of cortical computation II: From control architecture to a model of consciousness
- Neurophysiological mechanisms for the planning of movement and for spatial representations
- Plasticity in the motor network following primary motor cortex lesion.
- Saccades to mentally rotated targets
- Motor recovery mechanism of diffuse axonal injury: A combined study of transcranial magnetic stimulation and functional MRI
- Modélisation des propriétés du cortex cérébral : comparaison entre aires visuelles, motrices et préfrontales
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