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Human intracranial high-frequency activity maps episodic memory formation in space and time

机译:人颅内高频活动地图空间和时间的情节内存形成

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Noninvasive neuroimaging studies have revealed a network of brain regions that activate during human memory encoding; however, the relative timing of such activations remains unknown. Here we used intracranially recorded high-frequency activity (HFA) to first identify regions that activate during successful encoding. Then, we leveraged the high-temporal precision of HFA to investigate the timing of such activations. We found that memory encoding invokes two spatiotemporally distinct activations: early increases in HFA that involve the ventral visual pathway as well as the medial temporal lobe and late increases in HFA that involve the left inferior frontal gyrus, left posterior parietal cortex, and left ventrolateral temporal cortex. We speculate that these activations reflect higher-order visual processing and top-down modulation of attention/semantic information, respectively.
机译:非侵入性神经影像学研究揭示了在人存编码期间激活的脑区域网络; 然而,这种激活的相对定时仍然是未知的。 在这里,我们使用颅内记录的高频活动(HFA)来首先识别在成功编码期间激活的区域。 然后,我们利用HFA的高时间精度来研究这种激活的时间。 我们发现,内存编码调用了两种时尚性不同的激活:HFA的早期增加,涉及腹侧视觉途径以及内侧颞叶和涉及左下额相回到的HFA的晚期增加,留下椎间皮层和左侧腹侧颞叶。 皮质。 我们推测,这些激活反映了高阶的视觉处理和自上而下的注意力/语义信息调制。

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