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在反应执行之后而非之前绑定刺激:检验事件文件的时间绑定窗口。

Binding a stimulus after, but not before, response execution: examining the temporal binding window of event files.

作者信息

He Sihan, Pratt Jay

机构信息

University of Toronto, Toronto, Canada.

出版信息

Psychol Res. 2025 Jan 9;89(1):44. doi: 10.1007/s00426-025-02077-5.

Abstract

Efficient and flexible responses are essential for successfully interacting with the environment. These interactions require an instantaneous integration of visual stimuli and responses, known as 'stimulus-response binding' (SR binding). SR binding is considered part of a holistic temporary representation, the event file, that integrates the stimulus, the response, and the action effect produced by this response. It is commonly assumed that an event file (or at least the SR binding) would end with the execution of the response or its action effect. This, however, has never been directly tested. Here, we tested whether the SR binding can be formed between another temporally close stimulus that people didn't respond to by implementing a sequence of two stimuli where participants needed to respond only to the first or second stimulus. Our results indicate that a binding between the response and this temporally close stimulus can occur, but only when it's placed after, and not before, the response execution. This finding suggests that the event file might operate a temporal binding window that is not decisively terminated by the response execution. Further, this insight into the temporal dynamics of the event file highlights the temporal flexibility of the SR binding and, thus, the need for careful consideration of its sub-structures and durability.

摘要

高效且灵活的反应对于成功与环境互动至关重要。这些互动需要视觉刺激与反应的即时整合,即所谓的“刺激-反应绑定”(SR绑定)。SR绑定被认为是整体临时表征(事件文件)的一部分,该表征整合了刺激、反应以及此反应所产生的动作效果。通常认为事件文件(或至少SR绑定)会在反应执行或其动作效果出现时结束。然而,这从未得到过直接验证。在此,我们通过实施一系列两个刺激的序列来测试SR绑定是否能在人们未对其做出反应的另一个时间上接近的刺激之间形成,在该序列中参与者只需对第一个或第二个刺激做出反应。我们的结果表明,反应与这个时间上接近的刺激之间能够形成绑定,但前提是该刺激置于反应执行之后而非之前。这一发现表明事件文件可能运作着一个时间绑定窗口,该窗口不会因反应执行而决然终止。此外,对事件文件时间动态的这一洞察凸显了SR绑定的时间灵活性,因此,需要仔细考虑其子结构和持续性。

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