<div><p>Two observations about the cortex have puzzled neuroscientists for a long time. First, neural responses are highly variable. Second, the level of excitation and inhibition received by each neuron is tightly balanced at all times. Here, we demonstrate that both properties are necessary consequences of neural networks that represent information efficiently in their spikes. We illustrate this insight with spiking networks that represent dynamical variables. Our approach is based on two assumptions: We assume that information about dynamical variables can be read out linearly from neural spike trains, and we assume that neurons only fire a spike if that improves the representation of the dynamical variables. Based on these assumptions, ...
When performing a task, neural circuits must represent and manipulate continuous stimuli using discr...
When performing a task, neural circuits must represent and manipulate continuous stimuli using discr...
The brain processes sensory information about the outside world in large complex networks of neurons...
Two observations about the cortex have puzzled neuroscientists for a long time. First, neural respon...
How can neural networks learn to represent information optimally? We answer this question by derivin...
How can neural networks learn to represent information optimally? We answer this question by derivin...
∗ equal contribution. While spike timing has been shown to carry detailed stimulus information at th...
International audienceCompelling behavioral evidence suggests that humans can make optimal decisions...
International audienceCompelling behavioral evidence suggests that humans can make optimal decisions...
International audienceCompelling behavioral evidence suggests that humans can make optimal decisions...
International audienceCompelling behavioral evidence suggests that humans can make optimal decisions...
Large networks of sparsely coupled, excitatory and inhibitory cells occur throughout the brain. For ...
Cortical networks show a large heterogeneity of neuronal properties. However, traditional coding mod...
When performing a task, neural circuits must represent and manipulate continuous stimuli using discr...
Pattern formation, i.e., the generation of an inhomogeneous spatial activity distribution in a dynam...
When performing a task, neural circuits must represent and manipulate continuous stimuli using discr...
When performing a task, neural circuits must represent and manipulate continuous stimuli using discr...
The brain processes sensory information about the outside world in large complex networks of neurons...
Two observations about the cortex have puzzled neuroscientists for a long time. First, neural respon...
How can neural networks learn to represent information optimally? We answer this question by derivin...
How can neural networks learn to represent information optimally? We answer this question by derivin...
∗ equal contribution. While spike timing has been shown to carry detailed stimulus information at th...
International audienceCompelling behavioral evidence suggests that humans can make optimal decisions...
International audienceCompelling behavioral evidence suggests that humans can make optimal decisions...
International audienceCompelling behavioral evidence suggests that humans can make optimal decisions...
International audienceCompelling behavioral evidence suggests that humans can make optimal decisions...
Large networks of sparsely coupled, excitatory and inhibitory cells occur throughout the brain. For ...
Cortical networks show a large heterogeneity of neuronal properties. However, traditional coding mod...
When performing a task, neural circuits must represent and manipulate continuous stimuli using discr...
Pattern formation, i.e., the generation of an inhomogeneous spatial activity distribution in a dynam...
When performing a task, neural circuits must represent and manipulate continuous stimuli using discr...
When performing a task, neural circuits must represent and manipulate continuous stimuli using discr...
The brain processes sensory information about the outside world in large complex networks of neurons...