Complexity and heterogeneity are intrinsic to neurobiological systems, manifest in every process, at every scale, and are inextricably linked to the systems' emergent collective behaviours and function. However, the majority of studies addressing the dynamics and computational properties of biologically inspired cortical microcircuits tend to assume (often for the sake of analytical tractability) a great degree of homogeneity in both neuronal and synaptic/connectivity parameters. While simplification and reductionism are necessary to understand the brain's functional principles, disregarding the existence of the multiple heterogeneities in the cortical composition, which may be at the core of its computational proficiency, will inevitably f...
Recently, Markram et al. (2015) presented a model of the rat somatosensory microcircuit (Markram mod...
Large-scale biophysical circuit models provide mechanistic insights into the micro-scale and macro-s...
The hippocampus plays an indispensible role in the formation of new memories in the mammalian brain....
Complexity and heterogeneity are intrinsic to neurobiological systems, manifest in every process, at...
Computational studies addressing the dynamics and computational properties of biologically inspired ...
A major challenge for computational neuroscience is to understand the computational function of lami...
The neocortex, and with it the mammalian brain, achieves a level of computational efficiency like no...
The neocortex is a continuous sheet composed of rather stereotypical local microcircuits that consis...
Classical studies on stochastic computing in neural networks have focused on symmetric networks of h...
Theoretical research on the local cortical network has mainly been concerned with the study of rando...
Cerebral cortex is characterized by a strong neuron-to-neuron heterogeneity, but it is unclear what ...
Uncovering structural regularities and architectural topologies of cortical circuitry is vital for u...
-Microcircuits have been characterised as functional modules that act as elementary processing units...
What makes a neural microcircuit computationally powerful? Or more precisely, which measurable quant...
Understanding the link between the brain's anatomy and its function through computer simulations of ...
Recently, Markram et al. (2015) presented a model of the rat somatosensory microcircuit (Markram mod...
Large-scale biophysical circuit models provide mechanistic insights into the micro-scale and macro-s...
The hippocampus plays an indispensible role in the formation of new memories in the mammalian brain....
Complexity and heterogeneity are intrinsic to neurobiological systems, manifest in every process, at...
Computational studies addressing the dynamics and computational properties of biologically inspired ...
A major challenge for computational neuroscience is to understand the computational function of lami...
The neocortex, and with it the mammalian brain, achieves a level of computational efficiency like no...
The neocortex is a continuous sheet composed of rather stereotypical local microcircuits that consis...
Classical studies on stochastic computing in neural networks have focused on symmetric networks of h...
Theoretical research on the local cortical network has mainly been concerned with the study of rando...
Cerebral cortex is characterized by a strong neuron-to-neuron heterogeneity, but it is unclear what ...
Uncovering structural regularities and architectural topologies of cortical circuitry is vital for u...
-Microcircuits have been characterised as functional modules that act as elementary processing units...
What makes a neural microcircuit computationally powerful? Or more precisely, which measurable quant...
Understanding the link between the brain's anatomy and its function through computer simulations of ...
Recently, Markram et al. (2015) presented a model of the rat somatosensory microcircuit (Markram mod...
Large-scale biophysical circuit models provide mechanistic insights into the micro-scale and macro-s...
The hippocampus plays an indispensible role in the formation of new memories in the mammalian brain....