We examine the mechanisms by which the human auditory cortex processes the frequency content of natural sounds. Through mathematical modeling of ultra-high field (7 T) functional magnetic resonance imaging responses to natural sounds, we derive frequency-tuning curves of cortical neuronal populations. With a data-driven analysis, we divide the auditory cortex into five spatially distributed clusters, each characterized by a spectral tuning profile. Beyond neuronal populations with simple single-peaked spectral tuning (grouped into two clusters), we observe that similar to 60% of auditory populations are sensitive to multiple frequency bands. Specifically, we observe sensitivity to multiple frequency bands (1) at exactly one octave distance ...
Musical notes played at octave intervals (i.e., having the same pitch chroma) are perceived as simil...
Columnar arrangements of neurons with similar preference have been suggested as the fundamental proc...
Humans are able to perceive small difference of sound frequency but it is still unknown how the diff...
We examine the mechanisms by which the human auditory cortex processes the frequency content of natu...
Auditory cortical processing of complex meaningful sounds entails the transformation of sensory (ton...
Neurons in auditory cortex are selective for the frequency content of acoustical stimuli. Classicall...
Neurons in auditory cortex are selective for the frequency content of acoustical stimuli. Classicall...
Functional neuroimaging research provides detailed observations of the response patterns that natura...
<div><p>Functional neuroimaging research provides detailed observations of the response patterns tha...
Using ultra-high field fMRI, we explored the cortical depth-dependent stability of acoustic feature ...
Functional neuroimaging research provides detailed observations of the response patterns that natura...
Cocktail parties, busy streets, and other noisy environments pose a difficult challenge to the audit...
Musical notes played at octave intervals (i.e., having the same pitch chroma) are perceived as simil...
Columnar arrangements of neurons with similar preference have been suggested as the fundamental proc...
Humans are able to perceive small difference of sound frequency but it is still unknown how the diff...
We examine the mechanisms by which the human auditory cortex processes the frequency content of natu...
Auditory cortical processing of complex meaningful sounds entails the transformation of sensory (ton...
Neurons in auditory cortex are selective for the frequency content of acoustical stimuli. Classicall...
Neurons in auditory cortex are selective for the frequency content of acoustical stimuli. Classicall...
Functional neuroimaging research provides detailed observations of the response patterns that natura...
<div><p>Functional neuroimaging research provides detailed observations of the response patterns tha...
Using ultra-high field fMRI, we explored the cortical depth-dependent stability of acoustic feature ...
Functional neuroimaging research provides detailed observations of the response patterns that natura...
Cocktail parties, busy streets, and other noisy environments pose a difficult challenge to the audit...
Musical notes played at octave intervals (i.e., having the same pitch chroma) are perceived as simil...
Columnar arrangements of neurons with similar preference have been suggested as the fundamental proc...
Humans are able to perceive small difference of sound frequency but it is still unknown how the diff...