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使用广义偏相干分析评估麻醉和 kainic 酸作用下的皮质-海马功能连接性。

Assessing cortico-hippocampal functional connectivity under anesthesia and kainic acid using generalized partial directed coherence.

作者信息

Taxidis Jiannis, Coomber Ben, Mason Rob, Owen Markus

机构信息

School of Mathematical Sciences, University of Nottingham, Nottingham, NG7 2RD, UK.

出版信息

Biol Cybern. 2010 Apr;102(4):327-40. doi: 10.1007/s00422-010-0370-1. Epub 2010 Mar 4.

Abstract

A significant challenge in modern neuroscience lies in determining the functional connectivity between discrete populations of neurones and brain regions. In this study, a variation of partial directed coherence, the generalized partial directed coherence (gPDC), along with a newly proposed critical value for gPDC, were applied on recorded local field potentials (LFPs) and single-unit activity, in order to assess information flow between medial prefrontal cortex (mPFC) and hippocampus and within the hippocampus of the rat brain, under isoflurane anesthesia and kainic acid-induced enhanced neuronal activity. Our findings suggest that, under anesthesia, there exists a continuous information flow from hippocampus towards mPFC, reversed mostly during activity bursts occurring in the mPFC. Moreover, there was a clear directional connection from the lateral towards medial dorsal hippocampus, most prominent in the beta frequency band (10-30 Hz). Kainic acid resulted in partially disrupting the reciprocal cortico-hippocampal connectivity and reversing the intra-hippocampal one. The biological implications of these findings on the effects of anesthesia and kainic acid in brain connectivity, along with implementation issues of gPDC analysis on field potentials and spike trains, are extensively discussed.

摘要

现代神经科学面临的一个重大挑战在于确定离散神经元群体与脑区之间的功能连接。在本研究中,将部分定向相干性的一种变体——广义部分定向相干性(gPDC),以及新提出的gPDC临界值,应用于记录的局部场电位(LFP)和单神经元活动,以评估在异氟烷麻醉和 kainic 酸诱导的神经元活动增强情况下,大鼠脑内侧前额叶皮质(mPFC)与海马体之间以及海马体内的信息流。我们的研究结果表明,在麻醉状态下,存在从海马体到 mPFC 的持续信息流,在 mPFC 发生活动爆发时大部分会逆转。此外,从外侧背侧海马体到内侧背侧海马体存在明显的定向连接,在β频段(10 - 30 Hz)最为突出。Kainic 酸导致皮质 - 海马体相互连接部分中断,并逆转了海马体内的连接。本文广泛讨论了这些发现对麻醉和 kainic 酸对脑连接性影响的生物学意义,以及 gPDC 分析在场电位和尖峰序列上的实施问题。

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