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辨别性空间定向引起颞叶激活的证据。

Evidence of temporal lobe activation by discriminative spatial orientation.

作者信息

DeFrance J F, Hymel C, Degionanni J, Kutyna F, Calkins D S, Estes S, Schweitzer F C

机构信息

University of Texas Medical School at Houston 77025.

出版信息

Brain Topogr. 1993 Winter;6(2):137-42. doi: 10.1007/BF01191079.

Abstract

The results from this spatial orientation, or cue priming, investigation found that targets presented to the contralateral visual fields differentially activated the temporal zones. For instance, stimulation within the right visual field lead to activation of the left temporal zones, as indexed by the relative prominence of the association negativity, N2. The converse was true for left visual field stimulation. For both visual field stimulation, the N2 component also showed an occipital and parietal distribution. The P300 component, which is presumed to be modulated by medial temporal lobe structures, showed the classic centroparietal distribution. Somewhat surprisingly, differences between the primed (e.g., 'facilitated') and 'normal' conditions for the N2 component appeared restricted to the occipital zones. Here, the significant variable was the N2 peak latency. Hence, the priming cue appears to quicken the maximal development of the N2 processing component, preferentially over the occipital cortex, and this may partially explain the faster reaction times in the 'facilitated' conditions for both visual fields.

摘要

这项关于空间定向或线索启动的研究结果发现,呈现给对侧视野的目标会以不同方式激活颞叶区域。例如,右侧视野内的刺激会导致左侧颞叶区域的激活,这通过关联负波N2的相对显著性来体现。左侧视野刺激则反之。对于双侧视野刺激,N2成分也呈现枕叶和顶叶分布。据推测由内侧颞叶结构调节的P300成分呈现经典的中央顶叶分布。 somewhat令人惊讶的是,N2成分在启动(如“促进”)条件和“正常”条件之间的差异似乎仅限于枕叶区域。在此,显著变量是N2峰值潜伏期。因此,启动线索似乎优先在枕叶皮层加速N2处理成分的最大发展,这可能部分解释了在两种视野的“促进”条件下更快的反应时间。

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