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Effect of low gravitational stimulation on the perception of target elevation: role of spatial expertise.

作者信息

Carriot Jérôme, Charles Corinne, Huffenus Anne-Fabienne, Nougier Vincent, Raphel Christian, Cian Corinne

机构信息

Centre de Recherches du Service de Santé des Armées, Grenoble, France.

出版信息

Percept Psychophys. 2005 Aug;67(6):1044-51. doi: 10.3758/bf03193630.

DOI:10.3758/bf03193630
PMID:16396012
Abstract

To examine the interindividual differences in the judgment of the visually perceived eye level (VPEL-upright position) and of the visually perceived apparent zenith (VPAZ-supine position) when the subject is subjected to low gravitational-inertial force (GIF), we independently altered GIF in two different populations: control subjects and spatial experts. Subjects were instructed to set a luminous target to the eye level while they were in total darkness and motionless or undergoing low radial acceleration with respect to the threshold of the otolithic system (0.015-1.67 m/sec2 for the VPEL and 0.55-2.19 m/sec2 for the VPAZ, respectively). Results showed that (1) low GIFs, close to those met during daily life, induced an eye level lowering in the upright and supine positions for the control group, and (2) the spatial expertise modified the influence of low GIF. Whereas an oculogravic illusion was found for the control group, this phenomenon was absent (VPAZ) or weaker (VPEL) for the spatial experts. Thus, the relations that the subjects maintain with their spatial environment and the knowledge acquired through experience modify the processing of sensory information and the perceptive construction resulting from it. The interindividual differences in sensitivity to the oculogravic illusion are discussed in terms of sensory dominance and of a better efficiency in the use of the available sensory information.

摘要

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Influence of multisensory graviceptive information on the apparent zenith.
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Exp Brain Res. 2011 Feb;208(4):569-79. doi: 10.1007/s00221-010-2505-y. Epub 2010 Dec 8.
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Difference in the perception of the horizon during true and simulated tilt in the absence of semicircular canal cues.在没有半规管线索的情况下,真实倾斜和模拟倾斜期间地平线感知的差异。
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