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Second-order motion without awareness: Passive adaptation to second-order motion produces a motion aftereffect

机译:无意识的二阶运动:被动适应二阶运动会产生运动后效应

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摘要

Although second-order motion may be detected by early and automatic mechanisms, some models suggest that perceiving second-order motion requires higher-order processes, such as feature or attentive tracking. These types of attentionally mediated mechanisms could explain the motion aftereffect (MAE) perceived in dynamic displays after adapting to second-order motion. Here we tested whether there is a second-order MAE in the absence of attention or awareness. If awareness of motion, mediated by high-level or top-down mechanisms, is necessary for the second-order MAE, then there should be no measurable MAE if the ability to detect directionality is impaired during adaptation. To eliminate the subject’s ability to detect directionality of the adapting stimulus, a second-order drifting Gabor was embedded in a dense array of additional crowding Gabors. We found that a significant MAE was perceived even after adaptation to second-order motion in crowded displays that prevented awareness. The results demonstrate that second-order motion can be passively coded in the absence of awareness and without top-down attentional control.
机译:尽管二阶运动可能会由早期机制和自动机制检测到,但一些模型表明,感知二阶运动需要更高阶的过程,例如特征跟踪或专心跟踪。这些类型的注意力介导机制可以解释适应二阶运动后在动态显示器中感知到的运动后效应(MAE)。在这里,我们测试了在没有注意力或意识缺失的情况下是否存在二阶MAE。如果对于第二阶MAE而言,需要由高层或自上而下的机制介导的运动意识,则在自适应过程中如果检测方向性的能力受损,则不应有可测量的MAE。为了消除对象检测自适应刺激方向性的能力,将二阶漂移Gabor嵌入了密集的其他拥挤Gabors阵列中。我们发现,即使在拥挤的显示器中适应了二级运动之后,仍会感觉到明显的MAE,从而阻止了意识。结果表明,在没有意识和没有自上而下的注意力控制的情况下,可以对被动运动进行二次编码。

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