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字母持续存在于物理位置之后:视词形区和左颞平面。一项 fMRI 研究。

Letters persistence after physical offset: visual word form area and left planum temporale. An fMRI study.

机构信息

Clinical and Behavioural Neurology Laboratory, IRCCS Fondazione Santa Lucia, Rome, Italy.

出版信息

Hum Brain Mapp. 2013 Jun;34(6):1282-92. doi: 10.1002/hbm.21509. Epub 2012 Jan 16.

Abstract

Iconic memory is a high-capacity low-duration visual memory store that allows the persistence of a visual stimulus after its offset. The categorical nature of this store has been extensively debated. This study provides functional magnetic resonance imaging evidence for brain regions underlying the persistence of postcategorical representations of visual stimuli. In a partial report paradigm, subjects matched a cued row of a 3 × 3 array of letters (postcategorical stimuli) or false fonts (precategorical stimuli) with a subsequent triplet of stimuli. The cued row was indicated by two visual flankers presented at the onset (physical stimulus readout) or after the offset of the array (iconic memory readout). The left planum temporale showed a greater modulation of the source of readout (iconic memory vs. physical stimulus) when letters were presented compared to false fonts. This is a multimodal brain region responsible for matching incoming acoustic and visual patterns with acoustic pattern templates. These findings suggest that letters persist after their physical offset in an abstract postcategorical representation. A targeted region of interest analysis revealed a similar pattern of activation in the Visual Word Form Area. These results suggest that multiple higher-order visual areas mediate iconic memory for postcategorical stimuli.

摘要

标志性记忆是一种高容量、低持续时间的视觉记忆存储,允许视觉刺激在其消失后持续存在。这个存储的类别性质一直存在广泛的争论。本研究提供了功能磁共振成像证据,证明了大脑区域是视觉刺激的后类别代表性持续存在的基础。在部分报告范式中,被试将提示的 3×3 字母(后类别刺激)或假字体(前类别刺激)的行与随后的三刺激对进行匹配。提示行由两个视觉侧翼在数组出现时(物理刺激读出)或在数组消失后(标志性记忆读出)呈现。与呈现假字体相比,当呈现字母时,左颞叶上回显示出对读出源(标志性记忆与物理刺激)的更大调制。这是一个多模态脑区,负责将传入的听觉和视觉模式与听觉模式模板相匹配。这些发现表明,字母在其物理消失后以抽象的后类别表示形式持续存在。一个有针对性的兴趣区域分析显示,视觉词形区也存在类似的激活模式。这些结果表明,多个高级视觉区域介导了后类别刺激的标志性记忆。

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