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任意适用的空间关系反应。

Arbitrarily applicable spatial relational responding.

作者信息

May Richard J, Stewart Ian, Baez Luisa, Freegard Gary, Dymond Simon

机构信息

School of Psychology, University of South Wales, Pontypridd, United Kingdom.

School of Psychology, National University of Ireland, Galway, Ireland.

出版信息

J Exp Anal Behav. 2017 Mar;107(2):234-257. doi: 10.1002/jeab.250.

Abstract

Spatial reasoning, where novel spatial relationships are inferred based on trained relationships, can be conceptualized as arbitrarily applicable spatial relational responding. Here, we conducted two experiments to develop and validate, for the first time, a laboratory procedure to establish arbitrarily applicable spatial relational responding in adult humans. In Experiment 1, participants were trained on nonarbitrary spatial relational tasks designed to establish contextual cues for left of, right of, above, and below. Contextual cues were then used to train a series of arbitrary spatial relations involving four abstract shapes. Following training in a subset of arbitrary relations (A is left of B, B is above C, C is right of D), subsequent testing examined the emergence of untrained spatial relations (B is right of A, C is below B, D is left of C, D is below A and A is above D). When absent in initial tests, spatial relational responding was facilitated by a remedial training procedure incorporating nonarbitrary relational guidance. Participants showed patterns of spatial relational responding consistent with test relations. In Experiment 2, a variant reversal design yielded predictable, reversed spatial relational responses. Overall, the present procedures represent the first empirical demonstration of arbitrarily applicable spatial relational responding and thus, arguably, the first functional analytic model of spatial reasoning.

摘要

空间推理是指基于已训练的关系来推断新的空间关系,它可以被概念化为任意适用的空间关系反应。在此,我们首次进行了两项实验,以开发并验证一种实验室程序,用于在成年人类中建立任意适用的空间关系反应。在实验1中,参与者接受了非任意空间关系任务的训练,这些任务旨在为左、右、上和下建立情境线索。然后,利用这些情境线索来训练一系列涉及四个抽象形状的任意空间关系。在对一部分任意关系(A在B的左边,B在C的上方,C在D的右边)进行训练后,随后的测试考察了未训练的空间关系(B在A的右边,C在B的下方,D在C的左边,D在A的下方且A在D的上方)的出现情况。在初始测试中若未出现空间关系反应,则通过包含非任意关系引导的补救训练程序来促进这种反应。参与者表现出与测试关系一致的空间关系反应模式。在实验2中,一种变式反转设计产生了可预测的、反转的空间关系反应。总体而言,目前的程序首次实证证明了任意适用的空间关系反应,因此,可以说是第一个空间推理的功能分析模型。

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