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首页> 外文期刊>Behavioural Brain Research: An International Journal >Increase of spike-LFP coordination in rat prefrontal cortex during working memory
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Increase of spike-LFP coordination in rat prefrontal cortex during working memory

机译:在工作记忆过程中大鼠前额叶皮层中穗状突触-LFP协调性增加

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Working memory (WM) refers to the short-term maintenance of information with higher cognitive functions. Recent researches show that local field potentials (LFPs) and spikes, as different modes of neural signals, encode WM, respectively. There is a growing interest in how these two signals encode WM in coordination. The aim of this study is to investigate spike-LFP coupling coding of WM via the joint entropy analysis. The experimental data were multi-channel spikes and LFPs obtained from SD rat prefrontal cortex through the implanted microelectrode array during the WM tasks in Y-maze. The short-time Fourier transform (STFT) was applied to analyze the power changes of WM related frequency bands in the LFPs. The joint entropy indexes (JEIs) between spikes and the principle components of LFPs were calculated for each pair of the spike and the LFP series during WM. The results showed that the power of theta (4-12. Hz), low gamma (LG, 30-60. Hz) and high gamma band (HG, 60-100. Hz) in LFPs increased during the WM tasks. In addition, the JEIs between spikes and LFPs components (theta, LG and HG) significantly increased in the correct trials. Besides, the coupling levels were low when the rats waiting in the starting area. These results suggest that the JEIs between spikes and LFPs components (theta, LG and HG) encode WM effectively. These findings could lead to improved understanding of the WM mechanism from the view of spike-LFP joint encoding.
机译:工作记忆(WM)是指具有较高认知功能的信息的短期维护。最近的研究表明,作为不同模式的神经信号的局部场电势(LFP)和尖峰分别编码WM。人们对这两个信号如何协调编码WM的兴趣日益浓厚。这项研究的目的是通过联合熵分析来研究WM的穗-LFP耦合编码。实验数据是在Y迷宫中的WM任务期间,通过植入的微电极阵列从SD大鼠前额叶皮层获得的多通道尖峰和LFP。应用短时傅立叶变换(STFT)分析LFP中WM相关频段的功率变化。在WM期间,针对每对峰值和LFP系列计算峰值和LFP的主成分之间的联合熵指数(JEI)。结果表明,在WM任务期间,LFP中的theta(4-12。Hz),低伽玛(LG,30-60。Hz)和高伽玛带(HG,60-100。Hz)的功率增加。此外,在正确的试验中,尖峰和LFP成分(θ,LG和HG)之间的JEI显着增加。此外,当大鼠在开始区域等待时,耦合水平较低。这些结果表明,尖峰和LFP分量(θ,LG和HG)之间的JEI有效地编码了WM。这些发现可能会导致从峰值LFP联合编码的角度对WM机制有更好的了解。

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