The visual cortex of the mouse brain can be divided into ten or more areas that each contain complete or partial retinotopic maps of the contralateral visual field. It is generally assumed that these areas represent discrete processing regions. In contrast to the conventional input-output characterizations of neuronal responses to standard visual stimuli, here we asked whether six of the core visual areas have responses that are functionally distinct from each other for a given visual stimulus set, by applying machine learning techniques to distinguish the areas based on their activity patterns. Visual areas defined by retinotopic mapping were examined using supervised classifiers applied to responses elicited by a range of stimuli. Using t...
IntroductionOur brain is bombarded by a diverse range of visual stimuli, which are converted into co...
Single neurons can often show strong correlations with an animal’s behavioral output, but it is curr...
AbstractExtracellular local field potentials (LFPs) and multiunit activity (MUA) reflect the spatial...
Abstract Visual processing and behavior depend on specialized neural representations and information...
Sensory perception is context dependent and is likely modulated by task demands, learning and engage...
Many thousands of cortical neurons are activated by any single sensory stimulus, but the organizatio...
Neurons in sensory areas of neocortex exhibit responses tuned to specific features of the environmen...
Neurons in primary sensory cortex have diverse response properties, whereas higher cortical areas ar...
We have used optical imaging of intrinsic signals to visualize the retinotopic organization of mouse...
IntroductionOur brain is bombarded by a diverse range of visual stimuli, which are converted into co...
Summary: Many factors modulate the state of cortical activity, but the importance of cortical state ...
The senses are the interface between an organism and its environment. To interact with the world, an...
SummaryThe mouse is emerging as an important model for understanding how sensory neocortex extracts ...
Primary visual cortex (V1) is the first cortical processing level receiving topographically mapped i...
IntroductionOur brain is bombarded by a diverse range of visual stimuli, which are converted into co...
IntroductionOur brain is bombarded by a diverse range of visual stimuli, which are converted into co...
Single neurons can often show strong correlations with an animal’s behavioral output, but it is curr...
AbstractExtracellular local field potentials (LFPs) and multiunit activity (MUA) reflect the spatial...
Abstract Visual processing and behavior depend on specialized neural representations and information...
Sensory perception is context dependent and is likely modulated by task demands, learning and engage...
Many thousands of cortical neurons are activated by any single sensory stimulus, but the organizatio...
Neurons in sensory areas of neocortex exhibit responses tuned to specific features of the environmen...
Neurons in primary sensory cortex have diverse response properties, whereas higher cortical areas ar...
We have used optical imaging of intrinsic signals to visualize the retinotopic organization of mouse...
IntroductionOur brain is bombarded by a diverse range of visual stimuli, which are converted into co...
Summary: Many factors modulate the state of cortical activity, but the importance of cortical state ...
The senses are the interface between an organism and its environment. To interact with the world, an...
SummaryThe mouse is emerging as an important model for understanding how sensory neocortex extracts ...
Primary visual cortex (V1) is the first cortical processing level receiving topographically mapped i...
IntroductionOur brain is bombarded by a diverse range of visual stimuli, which are converted into co...
IntroductionOur brain is bombarded by a diverse range of visual stimuli, which are converted into co...
Single neurons can often show strong correlations with an animal’s behavioral output, but it is curr...
AbstractExtracellular local field potentials (LFPs) and multiunit activity (MUA) reflect the spatial...