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Titlebook: Brain Mechanisms and Spatial Vision; David J. Ingle,Marc Jeannerod,David N. Lee Book 1985 Martinus Nijhoff Publishers, Dordrecht 1985 brai

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期刊全称Brain Mechanisms and Spatial Vision
影响因子2023David J. Ingle,Marc Jeannerod,David N. Lee
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学科分类NATO Science Series D:
图书封面Titlebook: Brain Mechanisms and Spatial Vision;  David J. Ingle,Marc Jeannerod,David N. Lee Book 1985 Martinus Nijhoff Publishers, Dordrecht 1985 brai
影响因子This volume contains chapters derived from a N. A. T. O. Advanced Study Institute held in June 1983. As the director of this A. S. I. it was my hope that some of the e1ectrophysiologists could express the potentialities of their work for perceptual theory, and that some perceptionists could speculate on the underlying "units" of perception in a way that would engage the imagination of physio­ logists. The reader will have to be the judge of whether this was achieved, or whether such a psychophysiological inter1ingua is still overly idealistic. It is clear that after the revolution prec~pitated by Hube1 and Weisel in understanding of visual cortical neurons we still have only a foggy idea of the behavioral output of any particular species of cortical detector. It was therefore particularly unfortunate that two persons who have made great strides in correlating interesting facets of cat cortical physio­ logy with human psychophysics (Max Cynader and Martin Regan of Dalhousie University) were unable to attend this meeting. Never­ theless, a number of new and challenging ideas regarding both spatial perception and cortical mechanisms are represented in this volume, and it is hoped that
Pindex Book 1985
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Motion Parallax and the Perception of Three-Dimensional Surfaces,he 3-D structure of surfaces. Moreover the resolution of the monocular parallax system is only slightly poorer than that of binocular parallax or stereopsis. The similarities in the empirical characteristics of the parallax and stereoscopic systems may reflect similarities in the way the information
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The Development of Sensitivity of Kenetic, Binocular and Pictorial Depth Information in Human Infan suggests that sensitivity to kinetic, binocular and pictorial depth information develops in a fixed sequence. Some sensitivity to kinetic information may be present at birth or soon thereafter; sensitivity to binocular information appears between three and five months; and sensitivity to static mon
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Visual Experience and the Development of Depth Perception,rtheless were willing to jump down from a raised platform and run directly to their mother within a few minutes of their blindfolds being removed. Similarly, Thorndike (58) reported that four day old chicks, ‘without experience of heights’, became progressively less willing to jump down from a surfa
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Human Sensory-Motor Adaptation to the Terrestrial Force Environment,e emphasis on vision has come largely through Gibson’s seminal observations of the richness of the ambient optical array in providing information related to body orientation and movement (14,15,16) and through the studies of Dichgans and Brandt and their colleagues on the visual induction of apparen
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The Posterior Parietal Area as a Spatial Generator,ues provide enough information for locating objects in visual space and for directing movements toward them. Action in space, however, cannot rely solely on “allocentric” sensory maps since the position of objects must be reconstructed within a body-centered reference frame before they can be reache
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