Tadros Karine, Dupuis-Roy Nicolas, Fiset Daniel, Arguin Martin, Gosselin Frédéric
Centre de Recherche en Neuropsychologie Expérimentale et Cognition, Département de Psychologie, Université de Montréal, Montréal, Canada.
J Vis. 2013 Jan 4;13(1):4. doi: 10.1167/13.1.4.
It is generally accepted that the left hemisphere (LH) is more capable for reading than the right hemisphere (RH). Left hemifield presentations (initially processed by the RH) lead to a globally higher error rate, slower word identification, and a significantly stronger word length effect (i.e., slower reaction times for longer words). Because the visuo-perceptual mechanisms of the brain for word recognition are primarily localized in the LH (Cohen et al., 2003), it is possible that this part of the brain possesses better spatial frequency (SF) tuning for processing the visual properties of words than the RH. The main objective of this study is to determine the SF tuning functions of the LH and RH for word recognition. Each word image was randomly sampled in the SF domain using the SF bubbles method (Willenbockel et al., 2010) and was presented laterally to the left or right visual hemifield. As expected, the LH requires less visual information than the RH to reach the same level of performance, illustrating the well-known LH advantage for word recognition. Globally, the SF tuning of both hemispheres is similar. However, these seemingly identical tuning functions hide important differences. Most importantly, we argue that the RH requires higher SFs to identify longer words because of crowding.
一般认为,左半球(LH)比右半球(RH)更擅长阅读。左半视野呈现(最初由RH处理)会导致总体错误率更高、单词识别速度更慢以及单词长度效应显著更强(即较长单词的反应时间更慢)。由于大脑用于单词识别的视觉感知机制主要位于LH(科恩等人,2003年),因此大脑的这一部分可能比RH拥有更好的空间频率(SF)调谐来处理单词的视觉属性。本研究的主要目的是确定LH和RH用于单词识别的SF调谐功能。使用SF气泡法(威伦博克尔等人,2010年)在SF域中对每个单词图像进行随机采样,并向左侧或右侧视觉半视野横向呈现。正如预期的那样,LH比RH达到相同表现水平所需的视觉信息更少,这说明了LH在单词识别方面众所周知的优势。总体而言,两个半球的SF调谐相似。然而,这些看似相同的调谐功能隐藏着重要差异。最重要的是,我们认为由于拥挤,RH识别较长单词需要更高的SF。