Large-scale simulations of cortical models could help to shed light on the study of different brain states and cortical rhythms. In this talk, I will present high resolution wide-field spiking simulations of whole cortical hemisphere of a mouse at biological neural and synaptic density, reproducing the dynamics of Slow Wave Activity observed during anesthesia states. The model is obtained using parameters inferred from wide-field calcium imaging optical recordings acquired on anesthetized mice. Simulations are performed using two different spiking simulator engines (NEST and NEST GPU), and their outputs are analyzed using a tool suitable for the study of Slow Waves Activity. This methodology allows a direct comparison of outputs from differ...
<div><p>Local perturbations within complex dynamical systems can trigger cascade-like events that sp...
Neuronal population activity, both spontaneous and sensory-evoked, generates propagating waves in co...
Making progress in neuroscience is increasingly a collaborative effort that requires insights obtain...
Large-scale simulations of cortical models could help to shed light on the study of different brain ...
The development of novel techniques to record wide-field brain activity enables estimation of data-d...
Thanks to novel, powerful brain activity recording techniques, we can create data-driven models from...
The functions of the brain require coordination between functionally specialized and anatomically se...
Human functional imaging studies are increasingly focusing on the identification of large-scale neur...
The brain functions through coordinated activity among distributed regions. Wide-field calcium imagi...
Under anaesthesia or in deep sleep, different parts of the brain have a distinctive slow oscillatory...
Under anaesthesia or in deep sleep, different parts of the brain have a distinctive slow oscillatory...
Neurobiologically realistic, large-scale cortical and sub-cortical simulations are bound to play a k...
Local perturbations within complex dynamical systems can trigger cascade-like events that spread acr...
Although brain waves have been studied for a long time, the complex spatial dynamics of such waves b...
Advances in neurotechnology have been integral to the investigation of neural circuit function in sy...
<div><p>Local perturbations within complex dynamical systems can trigger cascade-like events that sp...
Neuronal population activity, both spontaneous and sensory-evoked, generates propagating waves in co...
Making progress in neuroscience is increasingly a collaborative effort that requires insights obtain...
Large-scale simulations of cortical models could help to shed light on the study of different brain ...
The development of novel techniques to record wide-field brain activity enables estimation of data-d...
Thanks to novel, powerful brain activity recording techniques, we can create data-driven models from...
The functions of the brain require coordination between functionally specialized and anatomically se...
Human functional imaging studies are increasingly focusing on the identification of large-scale neur...
The brain functions through coordinated activity among distributed regions. Wide-field calcium imagi...
Under anaesthesia or in deep sleep, different parts of the brain have a distinctive slow oscillatory...
Under anaesthesia or in deep sleep, different parts of the brain have a distinctive slow oscillatory...
Neurobiologically realistic, large-scale cortical and sub-cortical simulations are bound to play a k...
Local perturbations within complex dynamical systems can trigger cascade-like events that spread acr...
Although brain waves have been studied for a long time, the complex spatial dynamics of such waves b...
Advances in neurotechnology have been integral to the investigation of neural circuit function in sy...
<div><p>Local perturbations within complex dynamical systems can trigger cascade-like events that sp...
Neuronal population activity, both spontaneous and sensory-evoked, generates propagating waves in co...
Making progress in neuroscience is increasingly a collaborative effort that requires insights obtain...