方向位置?运动刺激任务中位置和方向的对应效应。

Simone Bosbach, Wolfgang Prinz, Dirk Kerzel
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引用次数: 34

摘要

五个实验进行了测试(任务无关的)运动信息提供的刺激,其位置随时间的变化是否会影响手动左右反应。到目前为止,一些研究报告了基于方向的西蒙效应,而另一些则没有。在实验1a中,出现了一个可靠的基于方向的效应,它不受响应模式的调节——也就是说,参与者是通过按两个键中的一个来响应,还是通过在某个方向上移动触控笔来更动态地响应。实验1a、1b和2支持观察者使用目标运动的起始位置作为空间编码的参考的观点。也就是说,观察者可能会将物体运动视为相对于起始位置的位置移动,而不是方向信息。相对位置编码的优势也可以在实验3中得到体现,实验3通过同时呈现静态和动态刺激,使相对位置与运动方向对立。此外,我们探索了眼球运动在刺激-反应相容性中的作用,并在实验1b和3a中表明,眼球跳动的执行或准备——正如注意力转移理论所提出的那样——并不是西蒙效应发生的必要条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Is direction position? Position- and direction-based correspondence effects in tasks with moving stimuli.

Five experiments were carried out to test whether (task-irrelevant) motion information provided by a stimulus changing its position over time would affect manual left-right responses. So far, some studies reported direction-based Simon effects whereas others did not. In Experiment 1a, a reliable direction-based effect occurred, which was not modulated by the response mode--that is, by whether participants responded by pressing one of two keys or more dynamically by moving a stylus in a certain direction. Experiments 1a, 1b, and 2 lend support to the idea that observers use the starting position of target motion as a reference for spatial coding. That is, observers might process object motion as a shift of position relative to the starting position and not as directional information. The dominance of relative position coding could also be shown in Experiment 3, in which relative position was pitted against motion direction by presenting a static and dynamic stimulus at the same time. Additionally, we explored the role of eye movements in stimulus-response compatibility and showed in Experiments 1b and 3a that the execution or preparation of saccadic eye movements--as proposed by an attention-shifting account--is not necessary for a Simon effect to occur.

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