Scinovex
reviewTop 1% cited

Visual Object Recognition

Annual Review of Neuroscience · 1996 · Vol. 19(1) · pp. 577–621
Nikos K. LogothetisDavid L. Sheinberg

Abstract

Visual object recognition is of fundamental importance to most animals. The diversity of tasks that any biological recognition system must solve suggests that object recognition is not a single, general purpose process. In this review, we consider evidence from the fields of psychology, neuropsychology, and neurophysiology, all of which supports the idea that there are multiple systems for recognition. Data from normal adults, infants, animals, and brain damaged patients reveal a major distinction between the classification of objects at a basic category level and the identification of individual objects from a homogeneous object class. An additional distinction between object representations used for visual perception and those used for visually guided movements provides further support for a multiplicity of visual recognition systems. Recent evidence from psychophysical and neurophysiological studies indicates that one system may represent objects by combinations of multiple views, or aspects, and another may represent objects by structural primitives and their spatial interrelationships.

Face Recognition and PerceptionMemory and Neural MechanismsNeural dynamics and brain functionCognitive neuroscience of visual object recognitionVisual ObjectsPsychologyObject (grammar)NeuropsychologyPerceptionNeurophysiologyVisual perceptionCognitive psychologyHomogeneous

MeSH terms

AdultAnimalsHaplorhiniBrainBrain Damage, ChronicBrain MappingDepth PerceptionFacial ExpressionForm PerceptionHumansInfantLearningRetinaRotationTemporal Lobe
Citations
1,321
FWCI
15.73
field-weighted impact
References
128
Percentile
99%
vs. same field & year
Citations per year
References
Stimulus-selective properties of inferior temporal neurons in the macaque
Journal of Neuroscience · 1984 · 1,447 citations
Grasping objects: the cortical mechanisms of visuomotor transformation
Trends in Neurosciences · 1995 · 1,395 citations
Organization and functions of cells responsive to faces in the temporal cortex
Philosophical Transactions of the Royal Society B Biological Sciences · 1992 · 892 citations
Recognizing depth-rotated objects: Evidence and conditions for three-dimensional viewpoint invariance.
Journal of Experimental Psychology Human Perception & Performance · 1993 · 535 citations
Visual neurones responsive to faces in the monkey temporal cortex
Experimental Brain Research · 1982 · 1,392 citations
Related articles
Visual Object Recognition
Annual Review of Neuroscience · 1996 · 1,321 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.