Neurophysiological mechanisms underlying face processing within and beyond the temporal cortical visual areas
- 29 January 1992
- journal article
- review article
- Published by The Royal Society in Philosophical Transactions Of The Royal Society B-Biological Sciences
- Vol. 335 (1273) , 11-21
- https://doi.org/10.1098/rstb.1992.0002
Abstract
The ways in which information about faces is represented and stored in the temporal lobe visual areas of primates, as shown by recordings from single neurons in macaques, are considered. Some neurons that respond primarily to faces are found in the cortex in the anterior part of the superior temporal sulcus (in which neurons are especially likely to be tuned to facial expression and to face movement involved in gesture), and in the TE areas more ventrally forming the inferior temporal gyrus (in which neurons are more likely to have responses related to the identity of faces). Quantitative studies of the responses of the neurons that respond differently to the faces of different individuals show that information about the identity of the individual is represented by the responses of a population of neurons, that is, ensemble encoding rather than ‘grandmother cell’ encoding is used. It is argued that this type of tuning is a delicate compromise between very fine tuning, which has the advantage of low interference in neuronal network operations but the disadvantage of losing the useful properties (such as generalization, completion and graceful degradation) of storage in neuronal networks, and broad tuning, which has the advantage of allowing these properties of neuronal networks to be realized but the disadvantage of leading to interference between the different memories stored in an associative network. There is evidence that the responses of some of these neurons are altered by experience so that new stimuli become incorporated in the network. It is shown that the representation that is built in temporal cortical areas shows considerable invariance for size, contrast, spatial frequency and translation. Thus the representation is in a form which is particularly useful for storage and as an output from the visual system. It is also shown that one of the representations that is built is object based, which is suitable for recognition and as an input to associative memory, and that another is viewer centred, which is appropriate for conveying information about gesture. Ways are considered in which such cortical representations might be built by competitive self-organization aided by backprojections in the multistage cortical porcessing hierarchy which has convergence from stage to stage.Keywords
This publication has 44 references indexed in Scilit:
- Learning Invariance from Transformation SequencesNeural Computation, 1991
- Organization of visual inputs to the inferior temporal and posterior parietal cortex in macaquesJournal of Neuroscience, 1991
- Large competitive networksNetwork: Computation in Neural Systems, 1990
- Finding Minimum Entropy CodesNeural Computation, 1989
- Functional subdivisions of the temporal lobe neocortexJournal of Neuroscience, 1987
- Selectivity between faces in the responses of a population of neurons in the cortex in the superior temporal sulcus of the monkeyBrain Research, 1985
- Four frames suffice: A provisional model of vision and spaceBehavioral and Brain Sciences, 1985
- Visual properties of neurons in a polysensory area in superior temporal sulcus of the macaque.Journal of Neurophysiology, 1981
- Visual areas in the temporal cortex of the macaqueBrain Research, 1979
- Single Units and Sensation: A Neuron Doctrine for Perceptual Psychology?Perception, 1972