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非时间性刺激大小和数字数值对时长判断影响中不同过程的证据。

Evidence for different processes involved in the effects of nontemporal stimulus size and numerical digit value on duration judgments.

作者信息

Rammsayer Thomas H, Verner Martin

出版信息

J Vis. 2016 May 1;16(7):13. doi: 10.1167/16.7.13.

Abstract

Perceived duration has been shown to be positively related to task-irrelevant, nontemporal stimulus magnitude. To account for this finding, Walsh's (2003) A Theory of Magnitude (ATOM) model suggests that magnitude of time is not differentiated from magnitude of other nontemporal stimulus characteristics and collectively processed by a generalized magnitude system. In Experiment 1, we investigated the combined effects of stimulus size and numerical quantity, as two nontemporal stimulus dimensions covered by the ATOM model, on duration judgments. Participants were required to reproduce the duration of target intervals marked by Arabic digits varying in physical size and numerical value. While the effect of stimulus size was effectively moderated by target duration, the effect of numerical value appeared to require attentional resources directed to the numerical value in order to become effective. Experiment 2 was designed to further elucidate the mediating influence of attention on the effect of numerical value on duration judgments. An effect of numerical value was only observed when participants' attention was directed to digit value, but not when participants were required to pay special attention to digit parity. While the ATOM model implies a common metrics and generalized magnitude processing for time, size, and quantity, the present findings provided converging evidence for the notion of two qualitatively different mechanisms underlying the effects of nontemporal stimulus size and numerical value on duration judgments. Furthermore, our data challenge the implicit common assumption that the effect of numerical value on duration judgments represents a continuously increasing function of digit magnitude.

摘要

感知持续时间已被证明与任务无关的非时间刺激大小呈正相关。为了解释这一发现,沃尔什(2003年)的量级理论(ATOM)模型表明,时间量级与其他非时间刺激特征的量级没有区别,而是由一个广义量级系统共同处理。在实验1中,我们研究了刺激大小和数值这两个ATOM模型涵盖的非时间刺激维度对持续时间判断的综合影响。参与者被要求重现由阿拉伯数字标记的目标间隔的持续时间,这些数字在物理大小和数值上有所不同。虽然刺激大小的影响被目标持续时间有效调节,但数值的影响似乎需要将注意力资源导向数值才能生效。实验2旨在进一步阐明注意力对数值对持续时间判断影响的中介作用。只有当参与者的注意力指向数字值时,才观察到数值的影响,而当要求参与者特别注意数字奇偶性时则没有观察到。虽然ATOM模型暗示了时间、大小和数量的通用度量和广义量级处理,但目前的研究结果为非时间刺激大小和数值对持续时间判断影响背后存在两种质的不同机制这一观点提供了一致的证据。此外,我们的数据挑战了一个隐含的普遍假设,即数值对持续时间判断的影响代表了数字量级的持续增加函数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa5b/4900137/7bcf6cead3d8/i1534-7362-16-7-13-f01.jpg

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