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Asymmetrical time and space interference in Tau and Kappa effects

机译:Tau和Kappa效应中的非对称时间和空间干扰

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How are the domains of space and time related? One approach, A Theory of Magnitude (ATOM), proposes an undifferentiated system of magnitude representation in the brain, predicting that space and time are symmetrically related, while Conceptual Metaphor Theory (CMT) proposes that we represent time using spatial metaphors, predicting asymmetrical interactions between domains. Tau and Kappa effects are perceptual phenomena that arise when observers judge the distance/duration between consecutive stimuli in sequence: Timing affects the perception of space (Tau) and spacing affects the perception of time (Kappa). Interference bidirectionality has been taken as evidence for ATOM. CMT proponents argue that interference may result from the perceiver imputing velocity to the stimuli. Here, the Tau and Kappa paradigm was modified to reduce the illusion of imputed velocity by manipulating stimuli parameters. In favor of CMT, we found that when the illusion of imputed velocity is reduced, asymmetrical interference arises: the Tau effect is eliminated while the Kappa effect remains intact.
机译:时空域如何关联?一种方法,即“量级理论”(ATOM),提出了大脑中未分化的量级表示系统,预测了空间和时间是对称相关的,而概念隐喻理论(CMT)提出了我们使用空间隐喻来表示时间,从而预测了不对称相互作用域之间。当观察者依次判断连续刺激之间的距离/持续时间时,会出现Tau和Kappa效应:时序会影响对空间的感知(Tau),而间隔会影响对时间的感知(Kappa)。干扰双向性已被视为ATOM的证据。 CMT的支持者认为,干扰可能是由于感知者对刺激的估算速度造成的。在此,对Tau和Kappa范式进行了修改,以通过操纵刺激参数来减少估算速度的错觉。有利于CMT,我们发现当减小推算速度的错觉时,会出现不对称干扰:消除了Tau效应,而Kappa效应保持不变。

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