Different kinds of known faces activate brain areas to dissimilar degrees. However, the tuning to type of knowledge, and the temporal course of activation, of each area have not been well characterized. Here we measured, with functional magnetic resonance imaging, brain activity elicited by unfamiliar, visually familiar, and personally-familiar faces. We assessed response amplitude and duration using flexible hemodynamic response functions, as well as the tuning to face type, of regions within the face processing system. Core face processing areas (occipital and fusiform face areas) responded to all types of faces with only small differences in amplitude and duration. In contrast, most areas of the extended face processing system (medial or...
Familiarity alters face recognition: Familiar faces are recognized more accurately than unfamiliar o...
In a highly dynamic visual environment the human brain needs to rapidly differentiate complex visual...
■ Face processing in the human brain recruits a widespread cortical network based mainly in the vent...
<div><p>Different kinds of known faces activate brain areas to dissimilar degrees. However, the tuni...
peer reviewedMost brain imaging studies on face perception have investigated the processing of unkno...
Most brain imaging studies on face perception have investigated the processing of unknown faces and ...
Despite a wealth of information provided by neuroimaging research, the neural basis of familiar face...
We present an objective and sensitive approach to measure human familiar face recognition (FFR) acro...
Face processing in the human brain recruits a widespread cortical network based mainly in the ventra...
We addressed the open question of how the human brain recognizes personally familiar faces. A dynami...
Familiarity alters face recognition: Familiar faces are recognized more accurately than unfamiliar o...
We addressed the open question of how the human brain recognizes personally familiar faces. A dynami...
■ Face processing in the human brain recruits a widespread cortical network based mainly in the vent...
Familiarity alters face recognition: Familiar faces are recognized more accurately than unfamiliar o...
Face recognition is critical to the appreciation of our social and physical relations. Functional ma...
Familiarity alters face recognition: Familiar faces are recognized more accurately than unfamiliar o...
In a highly dynamic visual environment the human brain needs to rapidly differentiate complex visual...
■ Face processing in the human brain recruits a widespread cortical network based mainly in the vent...
<div><p>Different kinds of known faces activate brain areas to dissimilar degrees. However, the tuni...
peer reviewedMost brain imaging studies on face perception have investigated the processing of unkno...
Most brain imaging studies on face perception have investigated the processing of unknown faces and ...
Despite a wealth of information provided by neuroimaging research, the neural basis of familiar face...
We present an objective and sensitive approach to measure human familiar face recognition (FFR) acro...
Face processing in the human brain recruits a widespread cortical network based mainly in the ventra...
We addressed the open question of how the human brain recognizes personally familiar faces. A dynami...
Familiarity alters face recognition: Familiar faces are recognized more accurately than unfamiliar o...
We addressed the open question of how the human brain recognizes personally familiar faces. A dynami...
■ Face processing in the human brain recruits a widespread cortical network based mainly in the vent...
Familiarity alters face recognition: Familiar faces are recognized more accurately than unfamiliar o...
Face recognition is critical to the appreciation of our social and physical relations. Functional ma...
Familiarity alters face recognition: Familiar faces are recognized more accurately than unfamiliar o...
In a highly dynamic visual environment the human brain needs to rapidly differentiate complex visual...
■ Face processing in the human brain recruits a widespread cortical network based mainly in the vent...