SummaryThe organization of human auditory cortex remains unresolved, due in part to the small stimulus sets common to fMRI studies and the overlap of neural populations within voxels. To address these challenges, we measured fMRI responses to 165 natural sounds and inferred canonical response profiles (“components”) whose weighted combinations explained voxel responses throughout auditory cortex. This analysis revealed six components, each with interpretable response characteristics despite being unconstrained by prior functional hypotheses. Four components embodied selectivity for particular acoustic features (frequency, spectrotemporal modulation, pitch). Two others exhibited pronounced selectivity for music and speech, respectively, and ...
The speech signal consists of a continuous stream of consonants and vowels, which must be de– and en...
Neuroimaging studies are important for developing an understanding of the functional organization of...
A central goal of sensory neuroscience is to construct models that can explain neural responses to n...
The organization of human auditory cortex remains unresolved, due in part to the small stimulus sets...
SummaryThe organization of human auditory cortex remains unresolved, due in part to the small stimul...
Using ultra-high field fMRI, we explored the cortical depth-dependent stability of acoustic feature ...
Using ultra-high field fMRI, we explored the cortical depth-dependent stability of acoustic feature ...
Auditory cortical processing of complex meaningful sounds entails the transformation of sensory (ton...
The layers of the neocortex each have a unique anatomical connectivity and functional role. Their ex...
The layers of the neocortex each have a unique anatomical connectivity and functional role. Their ex...
The layers of the neocortex each have a unique anatomical connectivity and functional role. Their ex...
The layers of the neocortex each have a unique anatomical connectivity and functional role. Their ex...
The layers of the neocortex each have a unique anatomical connectivity and functional role. Their ex...
The layers of the neocortex each have a unique anatomical connectivity and functional role. Their ex...
Speech comprehension in natural soundscapes rests on the ability of the auditory system to extract s...
The speech signal consists of a continuous stream of consonants and vowels, which must be de– and en...
Neuroimaging studies are important for developing an understanding of the functional organization of...
A central goal of sensory neuroscience is to construct models that can explain neural responses to n...
The organization of human auditory cortex remains unresolved, due in part to the small stimulus sets...
SummaryThe organization of human auditory cortex remains unresolved, due in part to the small stimul...
Using ultra-high field fMRI, we explored the cortical depth-dependent stability of acoustic feature ...
Using ultra-high field fMRI, we explored the cortical depth-dependent stability of acoustic feature ...
Auditory cortical processing of complex meaningful sounds entails the transformation of sensory (ton...
The layers of the neocortex each have a unique anatomical connectivity and functional role. Their ex...
The layers of the neocortex each have a unique anatomical connectivity and functional role. Their ex...
The layers of the neocortex each have a unique anatomical connectivity and functional role. Their ex...
The layers of the neocortex each have a unique anatomical connectivity and functional role. Their ex...
The layers of the neocortex each have a unique anatomical connectivity and functional role. Their ex...
The layers of the neocortex each have a unique anatomical connectivity and functional role. Their ex...
Speech comprehension in natural soundscapes rests on the ability of the auditory system to extract s...
The speech signal consists of a continuous stream of consonants and vowels, which must be de– and en...
Neuroimaging studies are important for developing an understanding of the functional organization of...
A central goal of sensory neuroscience is to construct models that can explain neural responses to n...