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首页> 外文期刊>Journal of experimental psychology. human perception and performance >Isolated Processing of Geometric Shapes and Their Corresponding Shape Words: Evidence From a Delayed Match-to-Sample Task
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Isolated Processing of Geometric Shapes and Their Corresponding Shape Words: Evidence From a Delayed Match-to-Sample Task

机译:几何形状及其对应形状词的孤立处理:来自延迟的匹配样本任务的证据

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Some theorists propose a domain-specific cognitive system dedicated to processing geometric information, but existence of this system remains debatable because of challenges in isolating geometric from linguistic and semantic processing. Recently, Sturz, Edwards, and Boyer (2014) developed a delayed match-to-sample task that presented a sample of a shape, shape word, or bidimensional stimulus composed of a shape and shape word. After a delay, participants identified the sample shape or the sample word by selecting between 2 shapes or 2 shape words. An asymmetrical pattern of interference emerged such that increased response times (RTs) and errors occurred in matching shape targets but not word targets. This was interpreted as shape words activating a semantic and spatial representation of shapes, but shapes only activating a spatial representation. The present experiments attempted to replicate and extend these results by manipulating figure-ground relations to contrast the original condition with an alternative to address an explanation based upon sample shape saliency (Experiment 1), by confirming the effectiveness of the saliency manipulation (Experiment 2), and by explicitly testing the assumption that shapes did not activate a semantic representation by reversing the sample-to-target matching criteria (Experiment 3). Experiment 1 replicated the asymmetrical pattern of results for both conditions, and Experiment 2 confirmed the saliency manipulation, which together undermine a pure saliency explanation. Experiment 3 produced a symmetrical pattern of results and suggests that the reversed matching criteria forced shapes to be processed in both a spatial and semantic fashion. These results provide support for a cognitive system dedicated to processing geometric information isolated from linguistic and semantic processing.
机译:一些理论家提出了专门用于处理几何信息的特定领域的认知系统,但是由于在将几何与语言和语义处理分离方面存在挑战,因此该系统的存在仍然值得商bat。最近,Sturz,Edwards和Boyer(2014)开发了延迟匹配采样任务,该任务提供了形状,形状词或由形状和形状词组成的二维刺激的样本。延迟后,参与者通过在2个形状或2个形状词之间进行选择来识别样本形状或样本词。出现了不对称的干扰模式,从而在匹配的形状目标而非单词目标中增加了响应时间(RT)和错误。这被解释为形状词激活形状的语义和空间表示,但是形状仅激活空间表示。本实验试图通过操纵图形与地面的关系来复制和扩展这些结果,以对比原始条件,并通过确认显着性操纵的有效性(实验2)来解决基于样本形状显着性的解释(实验1)。 ,并通过逆转样本与目标的匹配条件来明确测试形状不能激活语义表示的假设(实验3)。实验1重复了两种情况下结果的不对称模式,实验2确认了显着性操作,这一起破坏了纯粹的显着性解释。实验3产生了对称的结果模式,并建议反向匹配标准强制以空间和语义两种方式处理形状。这些结果为致力于处理与语言和语义处理分离的几何信息的认知系统提供了支持。

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