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What learning to see arbitrary motion tells us about biological motion perception

机译:学习看到任意运动会告诉我们有关生物运动知觉的信息

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In separate studies, observers viewed upright biological motion, inverted biological motion, or arbitrary motion created from systematically randomizing the positions of point-light dots. Results showed that observers (a) could learn to detect the presence of arbitrary motion, (b) could not learn to discriminate the coherence of arbitrary motion, although they could do so for upright biological motion, (c) could apply a detection strategy to learn to detect the presence of inverted biological motion nearly as well as they detected upright biological motion, and (d) performed better discriminating the coherence of upright biological motion compared with inverted biological motion. These results suggest that learning and form information play an important role in perceiving biological motion, although this role may only be apparent in tasks that require processing information from multiple parts of the motion display.
机译:在单独的研究中,观察者观察了通过系统地随机化点光源点的位置而产生的直立的生物运动,反向生物运动或任意运动。结果表明,观察者(a)可以学会检测任意运动的存在,(b)不能学会辨别任意运动的相干性,尽管他们可以这样做以进行直立的生物运动,(c)可以将检测策略应用于学会检测反向生物运动的存在与检测直立生物运动几乎一样,并且(d)与反向生物运动相比,可以更好地区分直立生物运动的相干性。这些结果表明,学习和形式信息在感知生物运动中起着重要作用,尽管这种作用仅在需要处理运动显示的多个部分的信息的任务中才很明显。

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