Experimental methods in neuroscience, such as calcium-imaging and recordings with multi-electrode arrays, are advancing at a rapid pace. They produce insight into the simultaneous activity of large numbers of neurons, and into plasticity processes in the brains of awake and behaving animals. These new data constrain models for neural computation and network plasticity that underlie perception, cognition, behavior, and learning. I will discuss in this short article four such constraints: inherent recurrent network activity and heterogeneous dynamic properties of neurons and synapses, stereotypical spatio-temporal activity patterns in networks of neurons, high trial-to-trial variability of network responses, and functional stability in spite ...
Computational neuroscience attempts to reverse engineer brain circuits at the cellular and system le...
Computational neuroscience is in the midst of constructing a new framework for understanding the bra...
Our brains contain billions of neurons, which are continually producing electrical signals to relay ...
Experimental methods in neuroscience, such as calcium-imaging and recordings with multi-electrode ar...
There are more neurons in the human brain than seconds in a lifetime. Given this incredible number h...
Synaptic plasticity allows cortical circuits to learn new tasks and to adapt to changing environment...
It is commonly believed that our brains serve as information processing systems. Therefore, common m...
Neuroscience is the study of the brain. It is an interdisciplinary field. At one level, behavioral t...
A major challenge in neuroscience is to reverse engineer the brain and understand its information pr...
Self-organization in biological nervous systems during the lifetime is known to largely occur throug...
The interplay between randomness and optimization has always been a major theme in the design of neu...
The science of brain function has a long and vibrant history. Recent technological developments have...
Animals exhibit a remarkable ability to learn and remember new behaviors, skills, and associations t...
The remarkable versatility of the mammalian brain is made possible by a huge diversity of cellular p...
Synaptic plasticity is the primary physiological mechanism underlying learning in the brain. It is d...
Computational neuroscience attempts to reverse engineer brain circuits at the cellular and system le...
Computational neuroscience is in the midst of constructing a new framework for understanding the bra...
Our brains contain billions of neurons, which are continually producing electrical signals to relay ...
Experimental methods in neuroscience, such as calcium-imaging and recordings with multi-electrode ar...
There are more neurons in the human brain than seconds in a lifetime. Given this incredible number h...
Synaptic plasticity allows cortical circuits to learn new tasks and to adapt to changing environment...
It is commonly believed that our brains serve as information processing systems. Therefore, common m...
Neuroscience is the study of the brain. It is an interdisciplinary field. At one level, behavioral t...
A major challenge in neuroscience is to reverse engineer the brain and understand its information pr...
Self-organization in biological nervous systems during the lifetime is known to largely occur throug...
The interplay between randomness and optimization has always been a major theme in the design of neu...
The science of brain function has a long and vibrant history. Recent technological developments have...
Animals exhibit a remarkable ability to learn and remember new behaviors, skills, and associations t...
The remarkable versatility of the mammalian brain is made possible by a huge diversity of cellular p...
Synaptic plasticity is the primary physiological mechanism underlying learning in the brain. It is d...
Computational neuroscience attempts to reverse engineer brain circuits at the cellular and system le...
Computational neuroscience is in the midst of constructing a new framework for understanding the bra...
Our brains contain billions of neurons, which are continually producing electrical signals to relay ...