Neural responses in visual cortex are influenced by visual stimuli and by ongoing spiking activity in local circuits. An important challenge in computational neuroscience is to develop models that can account for both of these features in large multi-neuron recordings and to reveal how stimulus representations interact with and depend on cortical dynamics. Here we introduce a statistical model of neural population activity that integrates a nonlinear receptive field model with a latent dynamical model of ongoing cortical activity. This model captures the temporal dynamics, effective network connectivity in large population recordings, and correlations due to shared stimulus drive as well as common noise. Moreover, because the nonlinear stim...
How neurons in the brain collectively represent stimuli is a long standing open problem. Studies in...
How neurons in the brain collectively represent stimuli is a long standing open problem. Studies in...
Sensory cortices display a suite of ubiquitous dynamical features, such as ongoing noise variability...
Neural responses in visual cortex are influenced by visual stimuli and by ongoing spiking activity i...
Modern experimental technologies enable simultaneous recording of large neural populations. These hi...
Modern experimental technologies enable simultaneous recording of large neural populations. These hi...
Modern experimental technologies enable simultaneous recording of large neural populations. These hi...
Modern experimental technologies enable simultaneous recording of large neural populations. These hi...
Modern experimental technologies such as multi-electrode arrays and 2-photon population calcium imag...
Neurons in the neocortex code and compute as part of a locally interconnected population. Large-scal...
Population activity in primary visual cortex exhibits substantial variability that is correlated on ...
Population activity in primary visual cortex exhibits substantial variability that is correlated on ...
Neural population activity often exhibits rich variability. This variability is thought to arise fro...
Neural population activity often exhibits rich variability. This variability can arise from single-n...
In order to understand how neural systems perform computations and process sensory information, we n...
How neurons in the brain collectively represent stimuli is a long standing open problem. Studies in...
How neurons in the brain collectively represent stimuli is a long standing open problem. Studies in...
Sensory cortices display a suite of ubiquitous dynamical features, such as ongoing noise variability...
Neural responses in visual cortex are influenced by visual stimuli and by ongoing spiking activity i...
Modern experimental technologies enable simultaneous recording of large neural populations. These hi...
Modern experimental technologies enable simultaneous recording of large neural populations. These hi...
Modern experimental technologies enable simultaneous recording of large neural populations. These hi...
Modern experimental technologies enable simultaneous recording of large neural populations. These hi...
Modern experimental technologies such as multi-electrode arrays and 2-photon population calcium imag...
Neurons in the neocortex code and compute as part of a locally interconnected population. Large-scal...
Population activity in primary visual cortex exhibits substantial variability that is correlated on ...
Population activity in primary visual cortex exhibits substantial variability that is correlated on ...
Neural population activity often exhibits rich variability. This variability is thought to arise fro...
Neural population activity often exhibits rich variability. This variability can arise from single-n...
In order to understand how neural systems perform computations and process sensory information, we n...
How neurons in the brain collectively represent stimuli is a long standing open problem. Studies in...
How neurons in the brain collectively represent stimuli is a long standing open problem. Studies in...
Sensory cortices display a suite of ubiquitous dynamical features, such as ongoing noise variability...