人类内侧颞叶的尖峰爆发和工作记忆。

Cerebral cortex communications Pub Date : 2022-10-19 eCollection Date: 2022-01-01 DOI:10.1093/texcom/tgac039
Francesco Cocina, Andreas Vitalis, Amedeo Caflisch
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引用次数: 0

摘要

持续的活动通常被认为是工作记忆(WM)的标志。最近的证据表明,内侧颞叶(MTL)的神经元放电与皮层区域观察到的WM神经模式是相容的。然而,除了单个神经元的放电率之外,这种活动的表征很少由测量组成。此外,在MTL区域已经报道了各种各样的射击动力学,这促使我们对WM过程和放电模式之间的关系进行更详细的研究。具体来说,我们在不同的分辨率水平下,研究了癫痫患者在WM任务期间海马、杏仁核和内嗅皮层电极记录的放电不规则性。我们表明,某些类型的(ir)规律预测患者的反应时间取决于所考虑的试验期。在记忆提取过程中,在杏仁核和内嗅皮层观察到显著的群体水平爆发活动。一般来说,常规和突发神经元有助于记忆负荷的解码,但它们在三个解剖区域中表现出重要的差异。我们的研究结果表明,非随机(非泊松)模式与WM相关,这需要开发和使用统计数据来补充单纯的峰值计数。
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Spiking burstiness and working memory in the human medial temporal lobe.

Persistent activity has commonly been considered to be a hallmark of working memory (WM). Recent evidence indicates that neuronal discharges in the medial temporal lobe (MTL) are compatible with WM neural patterns observed in cortical areas. However, the characterization of this activity rarely consists of measurements other than firing rates of single neurons. Moreover, a varied repertoire of firing dynamics has been reported in the MTL regions, which motivate the more detailed examination of the relationships between WM processes and discharge patterns undertaken here. Specifically, we investigate' at different resolution levels, firing irregularities in electrode recordings from the hippocampus, amygdala, and the entorhinal cortex of epileptic patients during a WM task. We show that some types of (ir)regularities predict response times of the patients depending on the trial periods under consideration. Prominent burst activity at the population level is observed in the amygdala and entorhinal cortex during memory retrieval. In general, regular and bursty neurons contribute to the decoding of the memory load, yet they display important differences across the three anatomical areas. Our results suggest that nonrandom (non-Poisson) patterns are relevant for WM, which calls for the development and use of statistics complementary to mere spike counts.

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