发音在速视自由回忆中字母串解析和保留中的作用。

H Whiteley, P Walker
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引用次数: 4

摘要

在Mewhort和Campbell(1981)的视觉词识别模型中,扫描解析机制将信息从字符缓冲区转移到短期存储器,并在很大程度上负责在视速自由回忆中观察到的熟悉效应。虽然Mewhort和Campbell没有详细说明发音在这项任务中的作用,但他们确实表明,扫描解析机制先于发音过程的任何参与(见Mewhort和Campbell, 1980)。然而,工作记忆的支持者(见Baddeley, 1986)清楚地表明,发音对于视觉信息向语音短期存储的转移是必要的。为了阐明发音在解析和保留字母串中的作用,我们要求受试者进行一阶和四阶字母串的触视自由回忆任务,有或没有发音抑制和/或无人参与的演讲。研究人员观察到,无人看管的演讲会干扰记忆,但只有在受试者可以自由地说出这些词的时候。这意味着受试者是从语音存储中检索信息,而发音对于视觉信息在语音存储中的登记是必要的。逼近阶和抑制阶之间缺乏相互作用支持了扫描解析机制独立于衔接的观点。因此,字母串似乎是在它们转移药理学存储之前的一个阶段被解析的。最后,结果表明,受试者能够直接绘制字母字符串的解析成分的表示,并且可能在语音存储困难时这样做。(摘要删节250字)
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The role of articulation in the parsing and retention of letter strings in tachistoscopic free recall.

In Mewhort and Campbell's (1981) model of visual word recognition, a scan-parse mechanism transfer information from a character buffer to a short-term store and is largely responsible for the familiarity effects observed in tachistoscopic free recall. Although Mewhort and Campbell do not elaborate on the role of articulation in this task, they do suggest that the scan-parse mechanism acts prior to any involvement of articulatory processes (see Mewhort & Campbell, 1980). However, proponents of working memory (see Baddeley, 1986) are clear that articulation is necessary for the transfer of visual information to a phonological short-term store. In order to clarify the role of articulation in the parsing and retention of letter string, we asked subjects to undertake a tachistoscopic free-recall task, involving first- and fourth-order letter strings, with and without articulatory suppression and/or unattended speech. Unattended speech was observed to interfere with recall, but only when subjects were free to articulate the strings. This implies that subjects were retrieving information from the phonological store and that articulation is necessary for the registration of visual information in this store. The lack of interaction between order-of-approximation and suppression supports the view that the scan-parse mechanism acts independently of articulation. It appears, therefore, that letter strings are parsed at a stage preceding their transfer of the pharmacological store. Finally, the results indicate that subjects are able to draw directly on a representation of the parsed components of a letter string and may do so when phonological storage is difficult.(ABSTRACT TRUNCATED AT 250 WORDS)

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