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阅读的心理物理学。XX。将中央和周边视觉中的字母识别与阅读速度联系起来。

Psychophysics of reading. XX. Linking letter recognition to reading speed in central and peripheral vision.

作者信息

Legge G E, Mansfield J S, Chung S T

机构信息

Minnesota Laboratory for Low-Vision Research, University of Minnesota, 75 East River Rd, Minneapolis, MN 55455, USA.

出版信息

Vision Res. 2001 Mar;41(6):725-43. doi: 10.1016/s0042-6989(00)00295-9.

Abstract

Our goal is to link spatial and temporal properties of letter recognition to reading speed for text viewed centrally or in peripheral vision. We propose that the size of the visual span - the number of letters recognizable in a glance - imposes a fundamental limit on reading speed, and that shrinkage of the visual span in peripheral vision accounts for slower peripheral reading. In Experiment 1, we estimated the size of the visual span in the lower visual field by measuring RSVP (rapid serial visual presentation) reading times as a function of word length. The size of the visual span decreased from at least 10 letters in central vision to 1.7 letters at 15 degrees eccentricity, in good agreement with the corresponding reduction of reading speed measured by Chung and coworkers (Chung, S. T. L., Mansfield, J. S., & Legge, G. E. (1998). Psychophysics of reading. XVIII. The effect of print size on reading speed in normal peripheral vision. Vision Research, 38, 2949-2962). In Exp. 2, we measured letter recognition for trigrams (random strings of three letters) as a function of their position on horizontal lines passing through fixation (central vision) or displaced downward into the lower visual field (5, 10 and 20 degrees ). We also varied trigram presentation time. We used these data to construct visual-span profiles of letter accuracy versus letter position. These profiles were used as input to a parameter-free model whose output was RSVP reading speed. A version of this model containing a simple lexical-matching rule accounted for RSVP reading speed in central vision. Failure of this version of the model in peripheral vision indicated that people rely more on lexical inference to support peripheral reading. We conclude that spatiotemporal characteristics of the visual span limit RSVP reading speed in central vision, and that shrinkage of the visual span results in slower reading in peripheral vision.

摘要

我们的目标是将字母识别的空间和时间特性与中央或周边视觉中所看文本的阅读速度联系起来。我们提出,视觉广度的大小(即一眼能识别的字母数量)对阅读速度构成了基本限制,并且周边视觉中视觉广度的缩小导致了周边阅读速度较慢。在实验1中,我们通过测量快速序列视觉呈现(RSVP)阅读时间作为单词长度的函数,来估计下视野中的视觉广度大小。视觉广度的大小从中央视觉中的至少10个字母减少到偏心度为15度时的1.7个字母,这与Chung及其同事测量的相应阅读速度降低情况非常吻合(Chung, S. T. L., Mansfield, J. S., & Legge, G. E. (1998). Psychophysics of reading. XVIII. The effect of print size on reading speed in normal peripheral vision. Vision Research, 38, 2949 - 2962)。在实验2中,我们测量了三字母组(由三个字母组成的随机字符串)的字母识别情况,该情况是其在通过注视点(中央视觉)或向下移入下视野(5度、10度和20度)的水平线上位置的函数。我们还改变了三字母组的呈现时间。我们使用这些数据构建字母准确性与字母位置的视觉广度剖面图。这些剖面图被用作一个无参数模型的输入,该模型的输出是RSVP阅读速度。这个模型的一个包含简单词汇匹配规则的版本解释了中央视觉中的RSVP阅读速度。该模型版本在周边视觉中的失效表明人们更多地依赖词汇推理来支持周边阅读。我们得出结论,视觉广度的时空特征限制了中央视觉中的RSVP阅读速度,并且视觉广度的缩小导致了周边视觉中阅读速度较慢。

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