Phantom motion aftereffects - Evidence of detectors for the analysis of optic flow

被引:81
作者
Snowden, RJ [1 ]
Milne, AB [1 ]
机构
[1] UNIV ABERDEEN,KINGS COLL,DEPT PSYCHOL,OLD ABERDEEN AB24 2UB,SCOTLAND
关键词
D O I
10.1016/S0960-9822(06)00329-0
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Background: Electrophysiological recording from the extrastriate cortex of non-human primates has revealed neurons that have large receptive fields and are sensitive to various components of object or self movement, such as translations, rotations and expansion/contractions. If these mechanisms exist in human vision, they might be susceptible to adaptation that generates motion aftereffects (MAEs). Indeed, it might be possible to adapt the mechanism in one part of the visual field and reveal what we term a 'phantom MAE' in another part. Results: The existence of phantom MAEs was probed by adapting to a pattern that contained motion in only two non-adjacent 'quarter' segments and then testing using patterns that had elements in only the other two segments. We also tested for the more conventional 'concrete' MAE by testing in the same two segments that had adapted, The strength of each MAE was quantified by measuring the percentage of dots that had to be moved in the opposite direction to the MAE in order to nullify it, Four experiments tested rotational motion, expansion/contraction motion, translational motion and a 'rotation' that consisted simply of the two segments that contained only translational motions of opposing direction. Compared to a baseline measurement where no adaptation took place, all subjects in all experiments exhibited both concrete and phantom MAEs, with the size of the latter approximately half that of the former. Conclusions: Adaptation to two segments that contained upward and downward motion induced the perception of leftward and rightward motion in another part of the visual field, This strongly suggests there are mechanisms in human vision that are sensitive to complex motions such as rotations. (C) Current Biology Ltd ISSN 0960-9822.
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页码:717 / 722
页数:6
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