SummaryCortical motor maps are the basis of voluntary movement, but they have proven difficult to understand in the context of their underlying neuronal circuits. We applied light-based motor mapping of Channelrhodopsin-2 mice to reveal a functional subdivision of the forelimb motor cortex based on the direction of movement evoked by brief (10 ms) pulses. Prolonged trains of electrical or optogenetic stimulation (100–500 ms) targeted to anterior or posterior subregions of motor cortex evoked reproducible complex movements of the forelimb to distinct positions in space. Blocking excitatory cortical synaptic transmission did not abolish basic motor map topography, but the site-specific expression of complex movements was lost. Our data sugges...
SummarySensory processing is dependent upon behavioral state. In mice, locomotion is accompanied by ...
Primary motor cortex (M1) contributes to the control of limb movements which have to be applied not ...
Long-range neuronal circuits play an important role in motor and sensory information processing. Det...
SummaryCortical motor maps are the basis of voluntary movement, but they have proven difficult to un...
The motor cortex controls voluntary, skilled movements. It possesses a basic somatotopic organizatio...
AbstractRecently, we found that electrical stimulation of motor cortex caused monkeys to make coordi...
The cortex influences movement by widespread top-down projections to many nervous system regions. Sk...
The intrinsic connections and functional structure of areas in the forelimb motor cortex are unclear...
We have mapped intracortical activity in vivo independent of sensory input using arbitrary point cha...
Spatiotemporal patterns of cortical activation occur superimposed upon sensory, motor, and cognitive...
We propose that some of the features of the topographic organization in motor cortex emerge from a c...
It is very well established that the motor cortex has a distinct cortical location that can be mappe...
155 pagesMotor sequences are constructed from primitives, hypothesized building blocks of movement, ...
Deciphering the physiological patterns of motor network connectivity is a prerequisite to elucidate ...
Summary: Little is known about the organizational and functional connectivity of the corticospinal (...
SummarySensory processing is dependent upon behavioral state. In mice, locomotion is accompanied by ...
Primary motor cortex (M1) contributes to the control of limb movements which have to be applied not ...
Long-range neuronal circuits play an important role in motor and sensory information processing. Det...
SummaryCortical motor maps are the basis of voluntary movement, but they have proven difficult to un...
The motor cortex controls voluntary, skilled movements. It possesses a basic somatotopic organizatio...
AbstractRecently, we found that electrical stimulation of motor cortex caused monkeys to make coordi...
The cortex influences movement by widespread top-down projections to many nervous system regions. Sk...
The intrinsic connections and functional structure of areas in the forelimb motor cortex are unclear...
We have mapped intracortical activity in vivo independent of sensory input using arbitrary point cha...
Spatiotemporal patterns of cortical activation occur superimposed upon sensory, motor, and cognitive...
We propose that some of the features of the topographic organization in motor cortex emerge from a c...
It is very well established that the motor cortex has a distinct cortical location that can be mappe...
155 pagesMotor sequences are constructed from primitives, hypothesized building blocks of movement, ...
Deciphering the physiological patterns of motor network connectivity is a prerequisite to elucidate ...
Summary: Little is known about the organizational and functional connectivity of the corticospinal (...
SummarySensory processing is dependent upon behavioral state. In mice, locomotion is accompanied by ...
Primary motor cortex (M1) contributes to the control of limb movements which have to be applied not ...
Long-range neuronal circuits play an important role in motor and sensory information processing. Det...