Vallortigara matching three - dimensional environmental geometry , not by image Chicks , like children , spontaneously reorient
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References http://rsbl.royalsocietypublishing.org/content/8/4/492.full.html#ref-list-1 This article cites 26 articles, 4 of which can be accessed free Subject collections (107 articles) cognition (529 articles) behaviour Articles on similar topics can be found in the following collections Email alerting service here right-hand corner of the article or click Receive free email alerts when new articles cite this article sign up in the box at the top
منابع مشابه
Chicks, like children, spontaneously reorient by three-dimensional environmental geometry, not by image matching.
Spatial reorientation by layout geometry occurs in numerous species, but its underlying mechanisms are debated. While some argue that navigating animals' sense of place is based on geometric computations over three-dimensional representations, others claim it depends on panoramic image-matching processes. Because children reorient by subtle three-dimensional perturbations of the terrain and not...
متن کاملmatching three - dimensional environmental geometry , not by image Chicks , like children , spontaneously reorient
References #ref-list-1 http://rsbl.royalsocietypublishing.org/content/early/2012/02/28/rsbl.2012.0067.full.html This article cites 26 articles, 4 of which can be accessed free P<P Published online 14 March 2012 in advance of the print journal. Subject collections (105 articles) cognition (521 articles) behaviour Articles on similar topics can be found in the following collections Email al...
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The macroscopic, three-dimensional surface layout geometry of an enclosure apparently provides a different contribution for spatial reorientation than the geometric cues associated with freestanding objects arranged in arrays with similar geometric shape. Here, we showed that a unitary spatial representation can account for the capability of animals to reorient both by extended surfaces and dis...
متن کاملView-based strategy for reorientation by geometry.
Human and non-human animals can use geometric information (metric information and left-right discrimination sense) to reorient themselves in an environment. The hypothesis that in so doing they rely on allocentric (map-like) representations has received wide consensus. However, theoretical models suggest that egocentric representations may represent efficient strategies for visuo-spatial naviga...
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Research has proved that disoriented children and nonhuman animals can reorient themselves using geometric and nongeometric features of the environment, showing conjoined use of both types of information to different degree depending on species and developmental level. Little is known of the neurobiological bases of these spatial reorientation processes. Here we take advantage of the neuroanato...
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