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首页> 外文期刊>NeuroImage >Brain activity during automatic semantic priming revealed by event-related functional magnetic resonance imaging.
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Brain activity during automatic semantic priming revealed by event-related functional magnetic resonance imaging.

机译:事件相关的功能性磁共振成像揭示了自动语义启动过程中的大脑活动。

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Semantic priming occurs when a subject is faster in recognising a target word when it is preceded by a related word compared to an unrelated word. The effect is attributed to automatic or controlled processing mechanisms elicited by short or long interstimulus intervals (ISIs) between primes and targets. We employed event-related functional magnetic resonance imaging (fMRI) to investigate blood oxygen level dependent (BOLD) responses associated with automatic semantic priming using an experimental design identical to that used in standard behavioural priming tasks. Prime-target semantic strength was manipulated by using lexical ambiguity primes (e.g., bank) and target words related to dominant or subordinate meaning of the ambiguity. Subjects made speeded lexical decisions (wordonword) on dominant related, subordinate related, and unrelated word pairs presented randomly with a short ISI. The major finding was a pattern of reduced activity in middle temporal and inferior prefrontal regions for dominant versus unrelated and subordinate versus unrelated comparisons, respectively. These findings are consistent with both a dual process model of semantic priming and recent repetition priming data that suggest that reductions in BOLD responses represent neural priming associated with automatic semantic activation and implicate the left middle temporal cortex and inferior prefrontal cortex in more automatic aspects of semantic processing.
机译:语义启动是指当对象先于相关单词而不是不相关单词时,对象识别目标单词的速度更快。该效果归因于素数与目标之间的短或长的激励间隔(ISI)引起的自动或受控处理机制。我们采用与事件相关的功能磁共振成像(fMRI),使用与标准行为启动任务中使用的实验设计相同的实验设计,研究与自动语义启动相关的血氧水平依赖性(BOLD)响应。通过使用词汇歧义素(例如银行)和与歧义的显性或从属含义相关的目标词来操纵主要目标的语义强度。受试者对以短ISI随机呈现的优势相关词,下属相关词和无关词对进行了快速的词汇决策(单词/非单词)。主要发现是在颞中部和下额叶前部区域活动的减少模式,分别用于显性比较,无关性比较和下级比较不相关性比较。这些发现与语义启动和近期重复启动数据的双重过程模型一致,这表明BOLD响应的减少代表与自动语义激活相关的神经启动,并在语义的更多自动方面暗示了左中颞叶皮层和下前额叶皮层处理。

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