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首页> 外文期刊>Human brain mapping >Top-down and bottom-up influences on the left ventral occipito-temporal cortex during visual word recognition: An analysis of effective connectivity
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Top-down and bottom-up influences on the left ventral occipito-temporal cortex during visual word recognition: An analysis of effective connectivity

机译:自上而下和自下而上对视觉单词识别过程中左腹枕颞皮层的影响:有效连通性分析

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The functional role of the left ventral occipito-temporal cortex (vOT) in visual word processing has been studied extensively. A prominent observation is higher activation for unfamiliar but pronounceable letter strings compared to regular words in this region. Some functional accounts have interpreted this finding as driven by top-down influences (e.g., Dehaene and Cohen [[Dehaene S, 2011]]: Trends Cogn Sci 15:254-262; Price and Devlin [[Price CJ, 2011]]: Trends Cogn Sci 15:246-253), while others have suggested a difference in bottom-up processing (e.g., Glezer et al. [[Glezer LS, 2009]]: Neuron 62:199-204; Kronbichler et al. [[Kronbichler M, 2007]]: J Cogn Neurosci 19:1584-1594). We used dynamic causal modeling for fMRI data to test bottom-up and top-down influences on the left vOT during visual processing of regular words and unfamiliar letter strings. Regular words (e.g., taxi) and unfamiliar letter strings of pseudohomophones (e.g., taksi) were presented in the context of a phonological lexical decision task (i.e., "Does the item sound like a word?"). We found no differences in top-down signaling, but a strong increase in bottom-up signaling from the occipital cortex to the left vOT for pseudohomophones compared to words. This finding can be linked to functional accounts which assume that the left vOT contains neurons tuned to complex orthographic features such as morphemes or words [e.g., Dehaene and Cohen [[Dehaene S, 2011]]: Trends Cogn Sci 15:254-262; Kronbichler et al. [[Kronbichler M, 2007]]: J Cogn Neurosci 19:1584-1594]: For words, bottom-up signals converge onto a matching orthographic representation in the left vOT. For pseudohomophones, the propagated signals do not converge, but (partially) activate multiple orthographic word representations, reflected in increased effective connectivity.
机译:左腹枕颞皮层(vOT)在视觉文字处理中的功能作用已得到广泛研究。一个突出的发现是,与该区域的常规单词相比,陌生但可发音的字母字符串的激活程度更高。一些职能部门解释说,这一发现是由自上而下的影响所驱动的(例如,Dehaene和Cohen [[Dehaene S,2011]:Trends Cogn Sci 15:254-262; Price和Devlin [[Price CJ,2011]:趋势Cogn Sci 15:246-253),而其他人则提出自下而上的处理方式有所不同(例如,Glezer等人[[Glezer LS,2009]:Neuron 62:199-204; Kronbichler等人[[ [Kronbichler M,2007]]:J Cogn Neurosci 19:1584-1594)。我们对fMRI数据使用动态因果模型,以在对常规单词和陌生字母字符串进行视觉处理期间测试自下而上和自上而下对左侧vOT的影响。在语音词汇决策任务的背景下(例如,“该项目听起来像单词吗?”),显示了常规单词(例如,出租车)和陌生的伪谐音字母串(例如,taksi)。我们发现自上而下的信号与单词相比,自上而下的信号没有区别,但是从枕叶皮质到左vOT的自下而上的信号有了很大的增加。该发现可以与功能说明相关联,这些功能说明假设左侧vOT包含已调整为诸如字素或单词之类的正字法特征的神经元[例如,Dehaene和Cohen [[Dehaene S,2011]]:Trends Cogn Sci 15:254-262; Kronbichler等。 [[Kronbichler M,2007]:J Cogn Neurosci 19:1584-1594]:对于单词,自下而上的信号会聚到左侧vOT中匹配的正交表达上。对于伪谐音器,传播的信号不收敛,但是(部分)激活多个正交字表示形式,反映出有效连接性的提高。

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