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基于樣本熵的神經(jīng)元放電脈沖間隔序列分析

Analysis of interspike intervals based on sample entropy

作者: 周保琢  梁振  姚志模  周逸峰 
單位:中國科學技術大學生命科學學院(合肥 230027)
關鍵詞: 樣本熵;時間間隔序列;時間尺度;不應期;生理信息 
分類號:
出版年·卷·期(頁碼):2012·31·5(467-473)
摘要:

目的 神經(jīng)元動作電位的放電脈沖間隔(interspike interval, ISI)序列包含豐富的時空編碼信息,但這種豐富的時空編碼信息所蘊含的生理信息沒有得到很好的揭示,本文采用樣本熵工具量化并分析ISI序列中可能包含的生理信息。方法 采用胞外多通道微電極記錄貓的初級視皮層神經(jīng)元對正弦光柵的反應動作電位,在不同時間尺度下采用抖動方法生成與原始動作電位序列在編碼層次上等價的ISI序列,然后利用樣本熵工具分析這些ISI序列包含的生理信息,將樣本熵與神經(jīng)元發(fā)放率進行關聯(lián)分析。本文還研究了貓初級視覺皮層細胞的方位選擇性與樣本熵的關系,并分析不同時間尺度對樣本熵的影響。結(jié)果 神經(jīng)元的樣本熵與發(fā)放率之間呈反相關關系,并在所有時間尺度上都顯著。在貓初級視覺皮層8個細胞的方位選擇性與樣本熵之間的關系中,6個細胞具有顯著反相關關系。而時間尺度的選擇對樣本熵的影響較小,呈弱反相關關系。結(jié)論 基于樣本熵的神經(jīng)元ISI序列分析結(jié)果表明,樣本熵一定程度上反映細胞的生理信息,為研究其他神經(jīng)體系動作電位包含的生理信息提供參考。

Objective Interspike intervals (ISI) of neuron action potentials contain a store of spatiotemporal coding information, yet the physiologic information in the spatiotemporal coding information was not revealed well. In this research, the physiologic information was quantified and analyzed in the ISI series by sample entropy (SampEn) method. Methods Using extracellular multi-unit in vivo recording, response action potential for sinusoidal gratings stimulus in cat primary visual cortex was recorded in this paper. And the jitter method was proposed to create new ISI series that were equivalent to original ones in different time scales. Physiologic information in ISI series was analyzed based on SampEn. This paper analyzed the correlation between SampEn and firing rate, the relationship between SampEn and direction selectivity, and the change of the SampEn with time scales. Results SampEn of neurons was of significantly negative correlation with firing rate in the whole time scales, and was of remarkably negative correlation with direction selectivity on six of eight neurons. And the SampEn of neurons was of weakly negative correlation with time scales. Conclusions SampEn reflects physiologic information of neurons in a certain degree and provides a reference for the physiologic information research of ISI series in nervous system.

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