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本文引用的文献

1
The Elevated Plus Maze Test for Measuring Anxiety-Like Behavior in Rodents.用于测量啮齿动物焦虑样行为的高架十字迷宫试验。
Methods Mol Biol. 2019;1916:69-74. doi: 10.1007/978-1-4939-8994-2_4.
2
Information transmission in HPC-PFC network for spatial working memory in rat.大鼠空间工作记忆中HPC-PFC网络的信息传递
Behav Brain Res. 2019 Jan 1;356:170-178. doi: 10.1016/j.bbr.2018.08.024. Epub 2018 Aug 28.
3
Strengthened functional connectivity among LFPs in rat medial prefrontal cortex during anxiety.焦虑期间大鼠内侧前额叶皮质局部场电位之间增强的功能连接。
Behav Brain Res. 2018 Sep 3;349:130-136. doi: 10.1016/j.bbr.2018.04.013. Epub 2018 Apr 19.
4
Anxiety disorders: a review of current literature.焦虑症:当前文献综述
Dialogues Clin Neurosci. 2017 Jun;19(2):87-88. doi: 10.31887/DCNS.2017.19.2/fthibaut.
5
Effects of electrical lesion of basolateral amygdala nucleus on rat anxiety-like behaviour under acute, sub-chronic, and chronic stresses.基底外侧杏仁核电损伤对急性、亚慢性和慢性应激下大鼠焦虑样行为的影响
Clin Exp Pharmacol Physiol. 2017 Apr;44(4):470-479. doi: 10.1111/1440-1681.12727.
6
Anxiety Evokes Hypofrontality and Disrupts Rule-Relevant Encoding by Dorsomedial Prefrontal Cortex Neurons.焦虑引发前额叶功能减退并破坏背内侧前额叶皮质神经元的规则相关编码。
J Neurosci. 2016 Mar 16;36(11):3322-35. doi: 10.1523/JNEUROSCI.4250-15.2016.
7
Direct Ventral Hippocampal-Prefrontal Input Is Required for Anxiety-Related Neural Activity and Behavior.焦虑相关神经活动和行为需要腹侧海马-前额叶直接输入。
Neuron. 2016 Feb 17;89(4):857-66. doi: 10.1016/j.neuron.2016.01.011. Epub 2016 Feb 4.
8
Resolving the neural circuits of anxiety.解析焦虑的神经回路。
Nat Neurosci. 2015 Oct;18(10):1394-404. doi: 10.1038/nn.4101. Epub 2015 Sep 25.
9
Past, present and future of spike sorting techniques.尖峰分类技术的过去、现在与未来。
Brain Res Bull. 2015 Oct;119(Pt B):106-17. doi: 10.1016/j.brainresbull.2015.04.007. Epub 2015 Apr 27.
10
Functional connectivity changes during a working memory task in rat via NMF analysis.通过非负矩阵分解分析大鼠在工作记忆任务期间的功能连接变化。
Front Behav Neurosci. 2015 Jan 30;9:2. doi: 10.3389/fnbeh.2015.00002. eCollection 2015.

[焦虑期间前额叶皮层动作电位因果网络的连接模式]

[Connectivity pattern of action potentials causal network in prefrontal cortex during anxiety].

作者信息

Bao Xuehui, Dong Haoran, Liu Tiaotiao, Zheng Xuyuan

机构信息

School of Biomedical Engineering and Technology, Tianjin Medical University, Tianjin 300070, P.R.China.

出版信息

Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2020 Jun 25;37(3):389-398. doi: 10.7507/1001-5515.201907011.

DOI:10.7507/1001-5515.201907011
PMID:32597079
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10319569/
Abstract

Anxiety disorder is a common emotional handicap, which seriously affects the normal life of patients and endangers their physical and mental health. The prefrontal cortex is a key brain region which is responsible for anxiety. Action potential and behavioral data of rats in the elevated plus maze (EPM) during anxiety (an innate anxiety paradigm) can be obtained simultaneously by using the and in conscious animal multi-channel microelectrode array recording technique. Based on maximum likelihood estimation (MLE), the action potential causal network was established, network connectivity strength and global efficiency were calculated, and action potential causal network connectivity pattern of the medial prefrontal cortex was quantitatively characterized. We found that the entries (44.13±6.99) and residence period (439.76±50.43) s of rats in the closed arm of the elevated plus maze were obviously higher than those in the open arm [16.50±3.25, <0.001; (160.23±48.22) s, <0.001], respectively. The action potential causal network connectivity strength (0.017 3±0.003 6) and the global efficiency (0.044 2±0.012 8) in the closed arm were both higher than those in the open arm (0.010 4±0.003 2, <0.01; 0.034 8±0.011 4, <0.001), respectively. The results suggest that the changes of action potential causal network in the medial prefrontal cortex are related to anxiety state. These data could provide support for the study of the brain network mechanism in prefrontal cortex during anxiety.

摘要

焦虑症是一种常见的情绪障碍,严重影响患者的正常生活,危及他们的身心健康。前额叶皮质是负责焦虑的关键脑区。通过使用清醒动物多通道微电极阵列记录技术,可以在焦虑状态(一种先天性焦虑范式)下的高架十字迷宫(EPM)中同时获取大鼠的动作电位和行为数据。基于最大似然估计(MLE),建立动作电位因果网络,计算网络连接强度和全局效率,并定量表征内侧前额叶皮质的动作电位因果网络连接模式。我们发现,大鼠在高架十字迷宫封闭臂中的进入次数(44.13±6.99)和停留时间(439.76±50.43)秒明显高于开放臂中的[16.50±3.25,<0.001;(160.23±48.22)秒,<0.001]。封闭臂中的动作电位因果网络连接强度(0.017 3±0.003 6)和全局效率(0.044 2±0.012 8)均高于开放臂中的(0.010 4±0.003 2,<0.01;0.034 8±0.011 4,<0.001)。结果表明,内侧前额叶皮质动作电位因果网络的变化与焦虑状态有关。这些数据可为焦虑期间前额叶皮质脑网络机制的研究提供支持。