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单词与图片匹配:一项关于语义类别效应的正电子发射断层扫描(PET)研究

Word and picture matching: a PET study of semantic category effects.

作者信息

Perani D, Schnur T, Tettamanti M, Gorno-Tempini M, Cappa S F, Fazio F

机构信息

Institute of Neuroscience and Bioimaging-CNR, Scientific Institute H San Raffaele and University of Milano, Italy.

出版信息

Neuropsychologia. 1999 Mar;37(3):293-306. doi: 10.1016/s0028-3932(98)00073-6.

Abstract

We report two positron emission tomography (PET) studies of cerebral activation during picture and word matching tasks, in which we compared directly the processing of stimuli belonging to different semantic categories (animate and inanimate) in the visual (pictures) and verbal (words) modality. In the first experiment, brain activation was measured in eleven healthy adults during a same/different matching task for textures, meaningless shapes and pictures of animals and artefacts (tools). Activations for meaningless shapes when compared to visual texture discrimination were localized in the left occipital and inferior temporal cortex. Animal picture identification, either in the comparison with meaningless shapes and in the direct comparison with non-living pictures, involved primarily activation of occipital regions, namely the lingual gyrus bilaterally and the left fusiform gyrus. For artefact picture identification, in the same comparison with meaningless shape-baseline and in the direct comparison with living pictures, all activations were left hemispheric, through the dorsolateral frontal (Ba 44/6 and 45) and temporal (Ba 21, 20) cortex. In the second experiment, brain activation was measured in eight healthy adults during a same/different matching task for visually presented words referring to animals and manipulable objects (tools); the baseline was a pseudoword discrimination task. When compared with the tool condition, the animal condition activated posterior left hemispheric areas, namely the fusiform (Ba 37) and the inferior occipital gyrus (Ba 18). The right superior parietal lobule (Ba 7) and the left thalamus were also activated. The reverse comparison (tools vs animals) showed left hemispheric activations in the middle temporal gyrus (Ba 21) and precuneus (Ba 7), as well as bilateral activation in the occipital regions. These results are compatible with different brain networks subserving the identification of living and non-living entities; in particular, they indicate a crucial role of the left fusiform gyrus in the processing of animate entities and of the left middle temporal gyrus for tools, both from words and pictures. The activation of other areas, such as the dorsolateral frontal cortex, appears to be specific for the semantic access of tools only from pictures.

摘要

我们报告了两项正电子发射断层扫描(PET)研究,这些研究针对图片和单词匹配任务期间的大脑激活情况展开,其中我们直接比较了视觉(图片)和言语(单词)模式下属于不同语义类别(有生命和无生命)的刺激的处理过程。在第一个实验中,对11名健康成年人在进行纹理、无意义形状以及动物和人工制品(工具)图片的相同/不同匹配任务期间的大脑激活情况进行了测量。与视觉纹理辨别相比,无意义形状的激活区域位于左侧枕叶和颞下回皮质。动物图片识别,无论是与无意义形状进行比较,还是与无生命图片进行直接比较,主要涉及枕叶区域的激活,即双侧舌回和左侧梭状回。对于人工制品图片识别,在与无意义形状基线的相同比较以及与有生命图片的直接比较中,所有激活都在左半球,通过背外侧额叶(44区/6区和45区)和颞叶(21区、20区)皮质。在第二个实验中,对8名健康成年人在进行视觉呈现的指代动物和可操纵物体(工具)的单词的相同/不同匹配任务期间的大脑激活情况进行了测量;基线是一个假词辨别任务。与工具条件相比,动物条件激活了左半球后部区域,即梭状回(37区)和枕下回(18区)。右侧顶上小叶(7区)和左侧丘脑也被激活。反向比较(工具与动物)显示左半球在颞中回(21区)和楔前叶(7区)有激活,以及枕叶区域的双侧激活。这些结果与服务于有生命和无生命实体识别的不同脑网络相一致;特别是,它们表明左侧梭状回在有生命实体的处理中起关键作用,而左侧颞中回对工具(无论是来自单词还是图片)起关键作用。其他区域的激活,如背外侧额叶皮质,似乎仅对来自图片的工具语义访问具有特异性。

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