creators_name: Edelman, Shimon type: journalp datestamp: 1997-11-18 lastmod: 2011-03-11 08:54:05 metadata_visibility: show title: Representation of Similarity in 3D Object Discrimination ispublished: pub subjects: cog-psy full_text_status: public abstract: How does the brain represent visual objects? In simple perceptual generalization tasks, the human visual system performs as if it represents the stimuli in a low-dimensional metric psychological space. In theories of 3D shape recognition, the role of feature-space representations (as opposed to structural or pictorial descriptions) has been for a long time a major point of contention. If shapes are indeed represented as points in a feature space, patterns of perceived similarity among different objects must reflect the structure of this space. The feature space hypothesis can then be tested by presenting subjects with complex parameterized 3D shapes, and by relating the similarities among subjective representations, as revealed in the response data by multidimensional scaling, to the objective parameterization of the stimuli. The results of four such tests, accompanied by computational simulations, support the notion that discrimination among 3D objects may rely on a low-dimensional feature space representation, and suggest that this space may be spanned by explicitly encoded class prototypes. date: 1995 date_type: published publication: Neural Computation volume: 7 pagerange: 407-422 refereed: TRUE citation: Edelman, Shimon (1995) Representation of Similarity in 3D Object Discrimination. [Journal (Paginated)] document_url: http://cogprints.org/575/2/199711009.ps