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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Cued Memory Retrieval Exhibits Reinstatement of High Gamma Power on a Faster Timescale in the Left Temporal Lobe and Prefrontal Cortex
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Cued Memory Retrieval Exhibits Reinstatement of High Gamma Power on a Faster Timescale in the Left Temporal Lobe and Prefrontal Cortex

机译:提高内存检索在左颞叶和前额外皮质中恢复高伽马电力的速度更快

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Converging evidence suggests that reinstatement of neural activity underlies our ability to successfully retrieve memories. However, the temporal dynamics of reinstatement in the human cortex remain poorly understood. One possibility is that neural activity during memory retrieval, like replay of spiking neurons in the hippocampus, occurs at a faster timescale than during encoding. We tested this hypothesis in 34 participants who performed a verbal episodic memory task while we recorded high gamma (62-100 Hz) activity from subdural electrodes implanted for seizure monitoring. Weshow that reinstatement of distributed patterns of high gamma activity occurs faster than during encoding. Using a time-warping algorithm, we quantify the timescale of the reinstatement and identify brain regions that show significant timescale differences between encoding and retrieval. Our data suggest that temporally compressed reinstatement of cortical activity is a feature of cued memory retrieval.
机译:融合证据表明,恢复神经活动是我们成功检索回忆的能力。 然而,人皮层中恢复的时间动态仍然明白很差。 一种可能性是在内存检索期间的神经活动,例如在海马中的尖刺神经元重播,以比编码期间更快的时间尺度发生。 我们在34名参与者中测试了这一假设,该假设进行了口头集内存记忆任务,同时我们记录了植入癫痫发作监测的软膜电极的高伽马(62-100Hz)活动。 Weshow恢复高伽玛活动的分布式模式的速度比编码在编码期间发生。 使用时差算法,我们量化恢复的时间尺度,并识别显示编码和检索之间的显着少校差异的大脑区域。 我们的数据表明皮质活动的时间上压缩恢复是Cure Memory Retrival的一个特征。

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