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Training peripheral vision to read: boosting the speed of letter processing

机译:训练阅读的周边视觉:提高信件处理的速度

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摘要

Central-field loss necessitates the use of peripheral vision which makes reading slow and difficult. Slower temporal processing of letter recognition has been shown to be a limiting factor in peripheral letter recognition and reading. Previous studies showed that perceptual learning can increase the number of letters recognized on each fixation and is accompanied by an increase in reading speed. We hypothesized that improvement in temporal processing speed underlies the observed training effects. Here, we proposed an adaptive training procedure to focus on boosting the speed of letter recognition, and investigated whether peripheral reading would be enhanced by this training method. Seven normally-sighted subjects were trained with four daily one-hour sessions of a letter recognition task at 10° in the lower visual field in a pre/post design. During training, we adjusted stimulus duration on a block by block basis to maintain task difficulty near a pre-defined level of 80% performance accuracy. Stimulus duration progressively decreased with training, indicative of faster letter recognition at the 80% criterion. Following training, reading speed measured using a rapid serial visual presentation showed a substantial improvement in the trained (lower) field (41%) and the untrained (upper) field (27%), similar to the improvements observed from the training with a fixed stimulus duration. Despite being no more effective than the previous training, the adaptive temporal training method may allow individualized training, and may have advantages for clinical populations.
机译:中心视场的损失使得必须使用外围视觉,这会使阅读变得缓慢而困难。较慢的字母识别时间处理已被证明是外围字母识别和阅读的限制因素。先前的研究表明,知觉学习可以增加每种注视方式识别的字母数量,并伴有阅读速度的提高。我们假设时间处理速度的提高是观察到的训练效果的基础。在这里,我们提出了一种适应性的训练程序,着重于提高字母识别的速度,并研究了这种训练方法是否会增强外围阅读。在前/后设计中,对七个视力正常的受试者进行了四个每天一小时的一次字母识别任务的培训,这些任务在较低的视野中在10°进行。在训练过程中,我们逐块调整了刺激持续时间,以使任务难度保持在性能精度80%的预定水平附近。刺激持续时间随着训练而逐渐减少,表明在80%的标准下字母识别速度更快。训练后,使用快速连续视觉演示测量的阅读速度显示,训练后的(下部)视野(41%)和未训练的(上部)视野(27%)有了实质性的提高,类似于固定训练时的观察结果刺激持续时间。尽管没有比以前的训练更有效,但是自适应时间训练方法可以允许进行个性化训练,并且对于临床人群可能具有优势。

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