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不相关的双侧皮质输入在海马亚区中对长波进行定时,而伽马波主要是同侧的。

Uncorrelated bilateral cortical input becomes timed across hippocampal subfields for long waves whereas gamma waves are largely ipsilateral.

作者信息

Hernández-Recio Sara, Muñoz-Arnaiz Ricardo, López-Madrona Víctor, Makarova Julia, Herreras Oscar

机构信息

Laboratory of Experimental and Computational Neurophysiology, Department of Translational Neuroscience, Cajal Institute, CSIC, Madrid, Spain.

Program in Neuroscience, Autónoma de Madrid University-Cajal Institute, Madrid, Spain.

出版信息

Front Cell Neurosci. 2023 Jul 27;17:1217081. doi: 10.3389/fncel.2023.1217081. eCollection 2023.

Abstract

The role of interhemispheric connections along successive segments of cortico-hippocampal circuits is poorly understood. We aimed to obtain a global picture of spontaneous transfer of activity during non-theta states across several nodes of the bilateral circuit in anesthetized rats. Spatial discrimination techniques applied to bilateral laminar field potentials (FP) across the CA1/Dentate Gyrus provided simultaneous left and right readouts in five FP generators that reflect activity in specific hippocampal afferents and associative pathways. We used a battery of correlation and coherence analyses to extract complementary aspects at different time scales and frequency bands. FP generators exhibited varying bilateral correlation that was high in CA1 and low in the Dentate Gyrus. The submillisecond delays indicate coordination but not support for synaptic dependence of one side on another. The time and frequency characteristics of bilateral coupling were specific to each generator. The Schaffer generator was strongly bilaterally coherent for both sharp waves and gamma waves, although the latter maintained poor amplitude co-variation. The lacunosum-moleculare generator was composed of up to three spatially overlapping activities, and globally maintained high bilateral coherence for long but not short (gamma) waves. These two CA1 generators showed no ipsilateral relationship in any frequency band. In the Dentate Gyrus, strong bilateral coherence was observed only for input from the medial entorhinal areas, while those from the lateral entorhinal areas were largely asymmetric, for both alpha and gamma waves. Granger causality testing showed strong bidirectional relationships between all homonymous bilateral generators except the lateral entorhinal input and a local generator in the Dentate Gyrus. It also revealed few significant relationships between ipsilateral generators, most notably the anticipation of lateral entorhinal cortex toward all others. Thus, with the notable exception of the lateral entorhinal areas, there is a marked interhemispheric coherence primarily for slow envelopes of activity, but not for pulse-like gamma waves, except in the Schafer segment. The results are consistent with essentially different streams of activity entering from and returning to the cortex on each side, with slow waves reflecting times of increased activity exchange between hemispheres and fast waves generally reflecting ipsilateral processing.

摘要

皮质-海马回路连续节段间半球间连接的作用目前了解甚少。我们旨在获取一幅麻醉大鼠双侧回路多个节点在非θ状态下活动自发传递的全局图景。应用于双侧CA1/齿状回层流场电位(FP)的空间辨别技术,在五个FP发生器中提供了左右同时读数,这些发生器反映了特定海马传入纤维和联合通路中的活动。我们使用了一系列相关性和相干性分析,以提取不同时间尺度和频段的互补信息。FP发生器表现出不同的双侧相关性,在CA1中较高,在齿状回中较低。亚毫秒级的延迟表明存在协同作用,但并不支持一侧对另一侧的突触依赖性。双侧耦合的时间和频率特征因每个发生器而异。沙费尔发生器在尖波和γ波方面都具有很强的双侧相干性,尽管后者的幅度协变较差。分子层隙缝发生器由多达三个空间重叠的活动组成,并且在长波(而非短波,即γ波)方面总体上保持较高的双侧相干性。这两个CA1发生器在任何频段都没有同侧关系。在齿状回中,仅在内侧内嗅区输入时观察到强烈的双侧相干性,而外侧内嗅区的输入在α波和γ波方面大多是不对称的。格兰杰因果检验显示,除了外侧内嗅区输入与齿状回中的一个局部发生器之间外,所有同名双侧发生器之间都存在强烈的双向关系。它还揭示同侧发生器之间几乎没有显著关系,最明显的是外侧内嗅皮质对所有其他区域的预期。因此,除了外侧内嗅区这一显著例外,主要在活动的慢包络方面存在明显的半球间相干性,而在脉冲状γ波方面则不存在,除了在沙费尔节段。这些结果与基本上不同的活动流从两侧进入和返回皮质一致,慢波反映半球间活动交换增加的时期,而快波通常反映同侧处理。

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