首页> 外文期刊>International journal of psychophysiology: official journal of the International Organization of Psychophysiology >Human brain response to visual stimulus between lower/upper visual fields and cerebral hemispheres.
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Human brain response to visual stimulus between lower/upper visual fields and cerebral hemispheres.

机译:人脑对上下视野和大脑半球之间的视觉刺激的反应。

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摘要

We studied the human brain response to visual stimulation in which a square area was randomly presented in upper and lower visual fields (VFs). Seven normal volunteers carried out a contrast-based visual search task. Magnetic responses were detected in the bilateral parietal regions at 200-250 ms after stimulus onset. We compared the response latencies and strengths of the essential single sensor and root mean square (RMS) of the regions. The former evaluates the strength of neural activity with relatively high spatial resolution, while the latter evaluates the global neural activity. The single sensor and RMS latencies for the lower left VF were significantly longer than that for the upper left (paired t-test, P<0.05). The strengths did not differ between the upper and lower left VFs. There was no significant difference in latency or strength between the upper right and lower right VFs. These findings suggest that only left VF has different response properties in the upper versus lower VF, and that both local and global extrastriate activities are responsible for this anisotropy.
机译:我们研究了人脑对视觉刺激的反应,其中在上部和下部视野(VFs)中随机呈现一个正方形区域。 7名正常志愿者执行了基于对比的视觉搜索任务。刺激发作后200-250 ms在双侧顶叶区域检测到磁响应。我们比较了基本单个传感器的响应潜伏期和强度以及区域的均方根(RMS)。前者以相对较高的空间分辨率评估神经活动的强度,而后者则评估整体神经活动。左下VF的单传感器和RMS延迟显着长于左上VF(配对t检验,P <0.05)。左上方和下方VF之间的强度没有差异。右上和右下VF之间的潜伏期或强度没有显着差异。这些发现表明,只有左室颤在上室颤和低室颤之间具有不同的反应特性,并且局部和整体的外泌体活动均是这种各向异性的原因。

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