In order to better understand brain functioning we need to investigate all the structural domains present in it, from single cell to interconnected entire brain regions. However, while our knowledge in terms of single/few cells functioning is vast, very little is known about neuronal networks, which are interacting collections of neurons functionally related to the same task. Moreover, the balanced and concerted activity of excitatory and inhibitory networks plays a key role for proper cortical computations. However, while exist several tools to record excitatory networks activity, this is not the case for inhibitory networks. Voltage sensitive dye imaging (VSDI) is a technique that allows the recording of neuronal activity by mean of propo...
Activity-dependent changes in the input-output (I-O) relationship of a neural circuit are central in...
Neural computations underlying sensory perception, cognition, and motor control are performed by pop...
The aim of this paper is to present a dynamic causal modeling (DCM) framework for hippocampal activi...
Dynamic imaging of neuronal function is one of the main techniques capable of resolving the emergent...
An understanding of how microscale voltage fluctuations interact to shape mesoscale cortical informa...
Voltage-sensitive dye imaging (VSDI) is a powerful technique for interrogating membrane potential dy...
International audienceVoltage-sensitive dye imaging (VSDI) is a key neurophysiological recording too...
Voltage-sensitive dyes (VSDs) and optical imaging are useful for studying spatiotemporal patterns of...
Neural computations underlying sensory perception, cognition, and motor control are performed by pop...
Although the cellular physiology of cerebellar neurons has made remarkable progress, the analysis of...
Voltage-sensitive dye imaging (VSDI), is a relatively novel technique which enables the recording an...
BACKGROUND: Voltage-sensitive dye (VSD) imaging and intrinsic optical signals (IOS) are widely used ...
Voltage-sensitive dye imaging (VSDI) is a powerful modern neuroimaging technique whose application i...
<p><b>A</b> Top: Bright field and fluorescence images of a small region of a neuronal culture at day...
A neural field model is presented that captures the essential non-linear characteristics of activity...
Activity-dependent changes in the input-output (I-O) relationship of a neural circuit are central in...
Neural computations underlying sensory perception, cognition, and motor control are performed by pop...
The aim of this paper is to present a dynamic causal modeling (DCM) framework for hippocampal activi...
Dynamic imaging of neuronal function is one of the main techniques capable of resolving the emergent...
An understanding of how microscale voltage fluctuations interact to shape mesoscale cortical informa...
Voltage-sensitive dye imaging (VSDI) is a powerful technique for interrogating membrane potential dy...
International audienceVoltage-sensitive dye imaging (VSDI) is a key neurophysiological recording too...
Voltage-sensitive dyes (VSDs) and optical imaging are useful for studying spatiotemporal patterns of...
Neural computations underlying sensory perception, cognition, and motor control are performed by pop...
Although the cellular physiology of cerebellar neurons has made remarkable progress, the analysis of...
Voltage-sensitive dye imaging (VSDI), is a relatively novel technique which enables the recording an...
BACKGROUND: Voltage-sensitive dye (VSD) imaging and intrinsic optical signals (IOS) are widely used ...
Voltage-sensitive dye imaging (VSDI) is a powerful modern neuroimaging technique whose application i...
<p><b>A</b> Top: Bright field and fluorescence images of a small region of a neuronal culture at day...
A neural field model is presented that captures the essential non-linear characteristics of activity...
Activity-dependent changes in the input-output (I-O) relationship of a neural circuit are central in...
Neural computations underlying sensory perception, cognition, and motor control are performed by pop...
The aim of this paper is to present a dynamic causal modeling (DCM) framework for hippocampal activi...