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Effects of the synaptic transmission's dynamics on possible neural codes

机译:突触传递动力学对可能的神经密码的影响

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摘要

To examine the effects of paired pulse facilitation, long-term synaptic modifications as well as spike frequency adaptation on neural signal transmission, a simple model was applied. This way various input-output properties of the model units were described. Particularly, the transmission of the mean and S.D. of the simulated synaptic currents were studied. The results indicate that the transfer of the mean value of the membrane currents cannot be described in terms of synaptic weights. So firing rate can hardly be an efficient neural code, especially for adaptive channels of the central nervous system (CNS). On the contrary, the transfer of S.D. of synaptic currents behaves in accordance with the synaptic weights. So it is supported that S.D. of the synaptic currents is a biological relevant subclass of the variation codes [see Perkel, H., Bullock, T.H., 1968. Neurol coding. Neurosci. Res. Program Bull. 6, 221-344]. It is discussed how this code can be established and how it works. (C) 2000 Elsevier Science Ireland Ltd. All rights reserved. [References: 24]
机译:为了检查配对脉冲促进,长期突触修饰以及尖峰频率适应对神经信号传输的影响,使用了一个简单的模型。这样,描述了模型单元的各种输入输出属性。特别是平均值和S.D.研究了模拟突触电流。结果表明,膜电流平均值的传递不能用突触权重来描述。因此,发射频率很难成为有效的神经代码,尤其是对于中枢神经系统(CNS)的自适应通道而言。相反,S.D。的转让突触电流的变化根据突触权重表现。因此支持S.D.突触电流的一部分是变异代码的生物学相关子类[参见Perkel,H.,Bullock,T.H.,1968。神经编码。神经科学。 Res。节目公牛。 6,221-344]。讨论了如何建立该代码及其工作方式。 (C)2000 Elsevier Science Ireland Ltd.保留所有权利。 [参考:24]

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