Sensory information is processed in distributed neuronal networks connected by intricate synaptic circuits. Studies of the rodent brain can provide insight into synaptic mechanisms of sensory perception and associative learning. In particular, the mouse whisker sensorimotor system has recently begun to be investigated through combinations of imaging and electrophysiology, providing data correlating neural activity with behaviour. In order to go beyond such correlative studies and to pinpoint the contributions of individual genes to brain function, it is critical to make highly controlled and specific manipulations. Here, we review recent progress towards genetic manipulation of targeted genes in specific neuronal cell types located in a sel...
In our everyday lives, we receive information from our environment and respond to this received info...
Responding to a stimulus requires transforming an internal sensory representation into an internal m...
In the mammalian brain, sensory cortices exhibit plasticity during task learning, but how this alter...
Sensory information is processed in distributed neuronal networks connected by intricate synaptic ci...
A challenge for neurobiology is to integrate information across many levels of research, ranging fro...
A challenge for neurobiology is to integrate information across many levels of research, ranging fro...
Because of its anatomical organization, the rodent whisker-to-barrel system is an ideal model to stu...
In the mouse whisker system, the contribution of L6 corticothalamic cells (L6 CT) to cortical and th...
Synaptic circuits bind together functional modules of the neocortex. We aim to clarify in a rodent m...
In mammals, tactile information is mapped topographically onto the contralateral side of the brain i...
SummaryIn the rodent vibrissal system, active sensation and sensorimotor integration are mediated in...
Comprised of six distinct layers, the neocortex is a key brain structure for many of our advanced co...
Computations in neocortical circuits are predominantly driven by synaptic integration of excitatory ...
AbstractNeocortex, the neuronal structure at the base of the remarkable cognitive skills of mammals,...
Neocortex, the neuronal structure at the base of the remarkable cognitive skills of mammals, is a la...
In our everyday lives, we receive information from our environment and respond to this received info...
Responding to a stimulus requires transforming an internal sensory representation into an internal m...
In the mammalian brain, sensory cortices exhibit plasticity during task learning, but how this alter...
Sensory information is processed in distributed neuronal networks connected by intricate synaptic ci...
A challenge for neurobiology is to integrate information across many levels of research, ranging fro...
A challenge for neurobiology is to integrate information across many levels of research, ranging fro...
Because of its anatomical organization, the rodent whisker-to-barrel system is an ideal model to stu...
In the mouse whisker system, the contribution of L6 corticothalamic cells (L6 CT) to cortical and th...
Synaptic circuits bind together functional modules of the neocortex. We aim to clarify in a rodent m...
In mammals, tactile information is mapped topographically onto the contralateral side of the brain i...
SummaryIn the rodent vibrissal system, active sensation and sensorimotor integration are mediated in...
Comprised of six distinct layers, the neocortex is a key brain structure for many of our advanced co...
Computations in neocortical circuits are predominantly driven by synaptic integration of excitatory ...
AbstractNeocortex, the neuronal structure at the base of the remarkable cognitive skills of mammals,...
Neocortex, the neuronal structure at the base of the remarkable cognitive skills of mammals, is a la...
In our everyday lives, we receive information from our environment and respond to this received info...
Responding to a stimulus requires transforming an internal sensory representation into an internal m...
In the mammalian brain, sensory cortices exhibit plasticity during task learning, but how this alter...