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简单神经元回路中的随机与确定性变异性:II. 海马切片

Stochastic versus deterministic variability in simple neuronal circuits: II. Hippocampal slice.

作者信息

Schiff S J, Jerger K, Chang T, Sauer T, Aitken P G

机构信息

Department of Neurosurgery, Children's National Medical Center, Washington, D.C. 20010.

出版信息

Biophys J. 1994 Aug;67(2):684-91. doi: 10.1016/S0006-3495(94)80527-2.

Abstract

Long time series of Schaffer collateral to CA1 pyramidal cell presynaptic volleys (stratum radiatum) and population spikes (stratum pyramidale) were evoked (driven) in rat hippocampal slices. From the driven CA1 region in normal [K+] perfusate, both population spike amplitude and an input-output function consisting of population spike amplitude divided by the presynaptic volley amplitude were analyzed. Raising [K+] in the perfusion medium to 8.5 mM, slices were induced to spontaneously burst fire in CA3 and long time series of inter-burst intervals were recorded. Three tests for determinism were applied to these series: a discrete adaptation of a local flow approach, a local dispersion approach, and nonlinear prediction. Surrogate data were generated to serve as mathematical and statistical controls. All of the population spike (6/6) and input-output (6/6) time series from the normal [K+] driven circuitry were stochastic by all three methods. Although most of the time series (5/6) from the autonomously bursting high [K+] state failed to demonstrate evidence of determinism, one (1/6) of these time series did demonstrate significant determinism. This single instance of predictability could not be accounted for by the linear correlation in these data.

摘要

在大鼠海马切片中诱发(驱动)了从Schaffer侧支到CA1锥体细胞突触前群峰电位(辐射层)和群体锋电位(锥体层)的长时间序列。在正常[K⁺]灌注液中从被驱动的CA1区域,分析了群体锋电位幅度以及由群体锋电位幅度除以突触前群峰电位幅度组成的输入-输出函数。将灌注介质中的[K⁺]提高到8.5 mM,诱导切片在CA3中自发爆发性放电,并记录了长时间的爆发间隔序列。对这些序列应用了三种确定性检验:局部流方法的离散改编、局部分散方法和非线性预测。生成了替代数据作为数学和统计对照。通过所有三种方法,来自正常[K⁺]驱动电路的所有群体锋电位(6/6)和输入-输出(6/6)时间序列都是随机的。尽管来自自主爆发高[K⁺]状态的大多数时间序列(5/6)未能显示出确定性的证据,但其中一个(1/6)时间序列确实显示出显著的确定性。这些数据中的线性相关性无法解释这种单一的可预测性实例。

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