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时间、数字和长度感知过程中短期记忆与执行功能的差异征募:一种个体差异研究方法。

The differential recruitment of short-term memory and executive functions during time, number, and length perception: An individual differences approach.

作者信息

Ogden Ruth S, Samuels Michael, Simmons Fiona, Wearden John, Montgomery Catharine

机构信息

1 School of Natural Sciences and Psychology, Liverpool John Moores University, Liverpool, UK.

2 School of Psychology, Keele University, Keele, UK.

出版信息

Q J Exp Psychol (Hove). 2018 Mar;71(3):657-669. doi: 10.1080/17470218.2016.1271445. Epub 2018 Jan 1.

Abstract

Developmental, behavioural, and neurological similarities in the processing of different magnitudes (time, number, space) support the existence of a common magnitude processing system (e.g., a theory of magnitude, ATOM). It is, however, unclear whether the recruitment of wider cognitive resources (short-term memory, STM; and executive function) during magnitude processing is similar across magnitude domains or is domain specific. The current study used an individual differences approach to examine the relationship between STM, executive function, and magnitude processing. In two experiments, participants completed number, length, and duration bisection tasks to assess magnitude processing and tasks that have been shown to assess STM span and executive component processes. The results suggest that the recruitment of STM and executive resources differed for the different magnitude domains. Duration perception was associated with access, inhibition, and STM span. Length processing was associated with updating, and number processing was associated with access to semantic memory. For duration and length, greater difficulty in the magnitude judgement task resulted in more relationships to STM and executive function. It is suggested that duration perception may be more demanding of STM and executive resources because it is represented sequentially, unlike length and number which can be represented nonsequentially.

摘要

不同量级(时间、数字、空间)处理过程中的发育、行为和神经学相似性支持了一个共同量级处理系统(例如,量级理论,ATOM)的存在。然而,尚不清楚在量级处理过程中更广泛认知资源(短期记忆,STM;以及执行功能)的调用在不同量级领域中是相似的还是特定于领域的。当前的研究采用个体差异方法来检验STM、执行功能和量级处理之间的关系。在两个实验中,参与者完成了数字、长度和持续时间二等分任务以评估量级处理,以及已被证明用于评估STM广度和执行成分过程的任务。结果表明,不同量级领域对STM和执行资源的调用有所不同。持续时间感知与信息提取、抑制和STM广度相关。长度处理与更新相关,而数字处理与语义记忆的提取相关。对于持续时间和长度,量级判断任务中更大的难度导致与STM和执行功能有更多的关联。有人认为,持续时间感知可能对STM和执行资源的要求更高,因为它是按顺序表征的,这与长度和数字可以非顺序表征不同。

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