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Are All Letters Really Processed Equally and in Parallel? Further Evidence of a Robust First Letter Advantage

机译:是否所有字母都被真正平等地并行处理?强大的首字母优势的进一步证据

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摘要

This present study examined accuracy and response latency of letter processing as a function of position within a horizontal array. In a series of 4 Experiments, target-strings were briefly (33 ms for Experiment 1 to 3, 83 ms for Experiment 4) displayed and both forward and backward masked. Participants then made a two alternative forced choice. The two alternative responses differed just in one element of the string, and position of mismatch was systematically manipulated. In Experiment 1, words of different lengths (from 3 to 6 letters) were presented in separate blocks. Across different lengths, there was a robust advantage in performance when the alternative response was different for the letter occurring at the first position, compared to when the difference occurred at any other position. Experiment 2 replicated this finding with the same materials used in Experiment 1, but with words of different lengths randomly intermixed within blocks. Experiment 3 provided evidence of the first position advantage with legal nonwords and strings of consonants, but did not provide any first position advantage for non-alphabetic symbols. The lack of a first position advantage for symbols was replicated in Experiment 4, where target-strings were displayed for a longer duration (83 ms). Taken together these results suggest that the first position advantage is a phenomenon that occurs specifically and selectively for letters, independent of lexical constraints. We argue that the results are consistent with models that assume a processing advantage for coding letters in the first position, and are inconsistent with the commonly held assumption in visual word recognition models that letters are equally processed in parallel independent of letter position.
机译:本研究检查了字母处理的准确性和响应潜伏期,它是水平阵列中位置的函数。在一系列的4个实验中,短暂显示了目标字符串(实验1到3为33毫秒,实验4为83毫秒),并且向前和向后都进行了屏蔽。然后,参与者做出了两个替代性的强制选择。两个替代响应仅在字符串的一个元素上有所不同,并且不匹配的位置已得到系统地处理。在实验1中,不同长度的单词(3到6个字母)以单独的块显示。在不同的长度上,与在其他位置出现差异时相比,当在第一位置出现的字母的替代响应不同时,在性能方面具有强大的优势。实验2使用与实验1相同的材料重复了这一发现,但不同长度的单词随机混合在块中。实验3提供了合法的非单词和辅音串的第一个位置优势的证据,但没有为非字母符号提供任何第一个位置优势。在实验4中重复了缺少符号的第一个位置优势的问题,在该实验中,目标字符串显示的时间更长(83毫秒)。这些结果加起来表明,第一个位置优势是一种现象,该现象专门针对字母而选择性地发生,与词汇约束无关。我们认为结果与假设在第一个位置编码字母具有处理优势的模型一致,并且与视觉单词识别模型中通常认为字母独立于字母位置并行处理的假设不一致。

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