SummaryIt is often assumed that learning takes place by changing an otherwise stable neural representation. To test this assumption, we studied changes in the directional tuning of primate motor cortical neurons during reaching movements performed in familiar and novel environments. During the familiar task, tuning curves exhibited slow random drift. During learning of the novel task, random drift was accompanied by systematic shifts of tuning curves. Our analysis suggests that motor learning is based on a surprisingly unstable neural representation. To explain these results, we propose that motor cortex is a redundant neural network, i.e., any single behavior can be realized by multiple configurations of synaptic strengths. We further hypo...
Previous studies support the notion that sensorimotor learning involves multiple processes. We inves...
Motor cortex neurons in the monkey brain were tested with a diverse and naturalistic arm movement se...
The activity of single neurons in the monkey motor cortex was studied during semi-naturalistic, unst...
AbstractNew research shows that the properties of cells in motor cortex change during learning of ne...
Neural activity is often low dimensional and dominated by only a few prominent neural covariation pa...
<div><p>Recent theoretical studies have proposed that the redundant motor system in humans achieves ...
AbstractThe primary motor cortex (M1) is known to control motor performance. Recent findings have al...
Animals can rapidly adapt their movements to external perturbations. This adaptation is paralleled b...
The mechanisms underlying the dynamics of movement-related neural activity are not known. In this is...
AbstractPrimary motor cortex has a complex, interconnected anatomical and functional architecture wi...
Motor skills can be maintained for decades, but the biological basis of this memory persistence rema...
Previous studies support the notion that sensorimotor learning involves multiple processes. We inves...
Over days and weeks, neural activity representing an animal’s position and movement in sensorimotor ...
Although it is firmly established that the primate motor cortex contributes to intentional behavior,...
Given the complex structure of the brain, how can synaptic plasticity explain the learning and forge...
Previous studies support the notion that sensorimotor learning involves multiple processes. We inves...
Motor cortex neurons in the monkey brain were tested with a diverse and naturalistic arm movement se...
The activity of single neurons in the monkey motor cortex was studied during semi-naturalistic, unst...
AbstractNew research shows that the properties of cells in motor cortex change during learning of ne...
Neural activity is often low dimensional and dominated by only a few prominent neural covariation pa...
<div><p>Recent theoretical studies have proposed that the redundant motor system in humans achieves ...
AbstractThe primary motor cortex (M1) is known to control motor performance. Recent findings have al...
Animals can rapidly adapt their movements to external perturbations. This adaptation is paralleled b...
The mechanisms underlying the dynamics of movement-related neural activity are not known. In this is...
AbstractPrimary motor cortex has a complex, interconnected anatomical and functional architecture wi...
Motor skills can be maintained for decades, but the biological basis of this memory persistence rema...
Previous studies support the notion that sensorimotor learning involves multiple processes. We inves...
Over days and weeks, neural activity representing an animal’s position and movement in sensorimotor ...
Although it is firmly established that the primate motor cortex contributes to intentional behavior,...
Given the complex structure of the brain, how can synaptic plasticity explain the learning and forge...
Previous studies support the notion that sensorimotor learning involves multiple processes. We inves...
Motor cortex neurons in the monkey brain were tested with a diverse and naturalistic arm movement se...
The activity of single neurons in the monkey motor cortex was studied during semi-naturalistic, unst...