Department of Cognitive Psychology and Methodology, University of Basel, Basel, Switzerland.
J Clin Exp Neuropsychol. 2009 Nov;31(8):959-66. doi: 10.1080/13803390902766895. Epub 2009 Apr 8.
We present data related to the role of working memory in dichotic-listening studies of speech lateralization using consonant-vowel syllable stimuli. A working-memory procedure was actually used in the pioneering dichotic-listening studies by Doreen Kimura in 1960, a fact that was forgotten in later dichotic-listening studies, exclusively focusing on the perceptual aspects of speech sound lateralization. Capitalizing on the original Kimura (1961a, 1961b) studies, we hypothesized that an increase in working-memory load leads to an amplified right-ear advantage (REA) in the dichotic-listening task. A total of 30 participants completed a dichotic-listening task including three working-memory load conditions, each consisting of trials of 3, 4, and 5 dichotically presented letter pairs. Results confirmed an enhanced REA as working-memory load increased. This right-ear effect increased significantly from 3 to 4 stimulus pairs and leveled off with the 5th pair. In addition, the assumption was tested that, within a single load condition, the REA appears mainly in late serial input positions. A detailed analysis of the results revealed that only late positions contributed to the overall REA. However, the highest load condition (5 letter pairs) also produced significant ear differences in the early part of the input position curve. The mechanisms likely to be responsible for these results are discussed in terms of top-down and bottom-up processes in hemispheric asymmetry.
我们提供了与使用辅音-元音音节刺激进行双听研究中工作记忆在言语侧化中的作用相关的数据。实际上,在 1960 年 Doreen Kimura 的开创性双听研究中就已经使用了工作记忆程序,这一事实在后来的专门关注言语声音侧化感知方面的双听研究中被遗忘了。利用 Kimura(1961a,1961b)的原始研究,我们假设工作记忆负荷的增加会导致双听任务中的右耳优势(REA)增强。共有 30 名参与者完成了一项双听任务,其中包括三个工作记忆负荷条件,每个条件都包含 3、4 和 5 对随机呈现的字母对的试验。结果证实,随着工作记忆负荷的增加,右耳效应增强。这种右耳效应从 3 对刺激对增加到 4 对刺激对显著增加,并在第 5 对刺激对时趋于平稳。此外,还测试了这样一个假设,即在单个负荷条件下,REA 主要出现在后期连续输入位置。对结果的详细分析表明,只有后期位置对总体 REA 有贡献。然而,最高负荷条件(5 对字母)在输入位置曲线的早期部分也产生了显著的耳间差异。这些结果可能归因于半球不对称的自上而下和自下而上的过程,讨论了可能负责这些结果的机制。