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经典的同一性负启动涉及在左前颞叶皮层中激活语义表征。

Classic identity negative priming involves accessing semantic representations in the left anterior temporal cortex.

作者信息

de Zubicaray Greig, McMahon Katie, Eastburn Mathew, Pringle Alan, Lorenz Lina

机构信息

Centre for Magnetic Resonance, The University of Queensland, QLD, 4072, Australia.

出版信息

Neuroimage. 2006 Oct 15;33(1):383-90. doi: 10.1016/j.neuroimage.2006.06.024. Epub 2006 Sep 5.

Abstract

Classic identity negative priming (NP) refers to the finding that when an object is ignored, subsequent naming responses to it are slower than when it has not been previously ignored (Tipper, S.P., 1985. The negative priming effect: inhibitory priming by ignored objects. Q. J. Exp. Psychol. 37A, 571-590). It is unclear whether this phenomenon arises due to the involvement of abstract semantic representations that the ignored object accesses automatically. Contemporary connectionist models propose a key role for the anterior temporal cortex in the representation of abstract semantic knowledge (e.g., McClelland, J.L., Rogers, T.T., 2003. The parallel distributed processing approach to semantic cognition. Nat. Rev. Neurosci. 4, 310-322), suggesting that this region should be involved during performance of the classic identity NP task if it involves semantic access. Using high-field (4 T) event-related functional magnetic resonance imaging, we observed increased BOLD responses in the left anterolateral temporal cortex including the temporal pole that was directly related to the magnitude of each individual's NP effect, supporting a semantic locus. Additional signal increases were observed in the supplementary eye fields (SEF) and left inferior parietal lobule (IPL).

摘要

经典的同一性负启动效应(NP)指的是这样一个发现:当一个物体被忽略时,随后对它的命名反应比它之前未被忽略时要慢(蒂珀,S.P.,1985年。负启动效应:被忽略物体的抑制性启动。《实验心理学季刊》37A,571 - 590页)。目前尚不清楚这种现象是否由于被忽略物体自动激活的抽象语义表征的参与而产生。当代联结主义模型提出颞叶前部皮质在抽象语义知识表征中起关键作用(例如,麦克莱兰,J.L.,罗杰斯,T.T.,2003年。语义认知的并行分布式处理方法。《自然神经科学综述》4,310 - 322页),这表明如果经典同一性NP任务涉及语义激活,那么该区域在执行此任务时应该会被激活。使用高场(4T)事件相关功能磁共振成像,我们观察到左侧颞叶前外侧皮质包括颞极的血氧水平依赖(BOLD)反应增强,这与每个个体的NP效应大小直接相关,支持了语义定位。在辅助眼区(SEF)和左侧顶下小叶(IPL)也观察到了额外的信号增强。

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