Auditory events elicit a series of waves in the auditory event-related fields (ERF) of the magnetoencephalogram (MEG). We still do not understand how ERFs are generated, what the various waves signify, and why they are subject-specific. To examine the generation of ERFs, we introduce analytical solutions of an already existing computational model of auditory cortex (AC) [1, 2] which accounts for ERFs.Poster presented at Bernstein Conference Berlin 201
We investigate how the neural processing in auditory cortex is shaped by the statistics of natural s...
We investigate how the neural processing in auditory cortex is shaped by the statistics of natural s...
Pitch is a fundamental attribute of auditory perception. The interaction of concurrent pitches gives...
Auditory event-related fields (ERFs) measured with magnetoencephalography (MEG) are useful for study...
Event-related fields of the magnetoencephalogram are triggered by sensory stimuli and appear as a se...
Event-related fields of the magnetoencephalogram are triggered by sensory stimuli and appear as a se...
Event-related fields of the magnetoencephalogram are triggered by sensory stimuli and appear as a se...
Magnetoencephalography(MEG)isawidelyusedbrainimagingtechniquewhosehightemporalresolutionmakesitideal...
We demonstrate how the structure of auditory cortex can be investigated by combining computational m...
Magnetoencephalography (MEG) is a persuasive tool to study the human brain in physiology and psychol...
When neurons fire in the auditory cortex what do they represent? What is the form of transformation ...
International audienceNeuronally plausible, generative or forward models are essential for understan...
International audienceNeuronally plausible, generative or forward models are essential for understan...
International audienceNeuronally plausible, generative or forward models are essential for understan...
In noisy and complex environments, human listeners must segregate the mixture of sound sources arriv...
We investigate how the neural processing in auditory cortex is shaped by the statistics of natural s...
We investigate how the neural processing in auditory cortex is shaped by the statistics of natural s...
Pitch is a fundamental attribute of auditory perception. The interaction of concurrent pitches gives...
Auditory event-related fields (ERFs) measured with magnetoencephalography (MEG) are useful for study...
Event-related fields of the magnetoencephalogram are triggered by sensory stimuli and appear as a se...
Event-related fields of the magnetoencephalogram are triggered by sensory stimuli and appear as a se...
Event-related fields of the magnetoencephalogram are triggered by sensory stimuli and appear as a se...
Magnetoencephalography(MEG)isawidelyusedbrainimagingtechniquewhosehightemporalresolutionmakesitideal...
We demonstrate how the structure of auditory cortex can be investigated by combining computational m...
Magnetoencephalography (MEG) is a persuasive tool to study the human brain in physiology and psychol...
When neurons fire in the auditory cortex what do they represent? What is the form of transformation ...
International audienceNeuronally plausible, generative or forward models are essential for understan...
International audienceNeuronally plausible, generative or forward models are essential for understan...
International audienceNeuronally plausible, generative or forward models are essential for understan...
In noisy and complex environments, human listeners must segregate the mixture of sound sources arriv...
We investigate how the neural processing in auditory cortex is shaped by the statistics of natural s...
We investigate how the neural processing in auditory cortex is shaped by the statistics of natural s...
Pitch is a fundamental attribute of auditory perception. The interaction of concurrent pitches gives...