Kuriscák E, Trojan S, Wünsch Z
Institute of Physiology, First Faculty of Medicine, Charles University, Prague, Czech Republic.
Physiol Res. 2002;51(3):205-15.
We investigated how selected electromorphological parameters of myelinated axons influence the preservation of interspike intervals when the propagation of action potentials is corrupted by axonal intrinsic noise. Hereby we tried to determine how the intrinsic axonal noise influences the performance of axons serving as carriers for temporal coding. The strategy of this coding supposes that interspike intervals presented to higher order neurons would minimally be deprived of information included in interspike intervals at the axonal initial segment. Our experiments were conducted using a computer model of the myelinated axon constructed in a software environment GENESIS (GEneral NEural SImulation System). We varied the axonal diameter, myelin sheath thickness, axonal length, stimulation current and channel distribution to determine how these parameters influence the role of noise in spike propagation and hence in preserving the interspike intervals. Our results, expressed as the standard deviation of spike travel times, showed that by stimulating the axons with regular rectangular pulses the interspike intervals were preserved with a microsecond accuracy. Stimulating the axons with pulses imitating postsynaptic currents, greater changes of interspike intervals were found, but the influence of implemented noise on the jitter of interspike intervals was approximately the same.
我们研究了有髓轴突的特定电形态学参数在动作电位传播因轴突内在噪声而受到破坏时,是如何影响峰电位间隔的保持的。据此,我们试图确定轴突内在噪声如何影响作为时间编码载体的轴突的性能。这种编码策略假定,呈现给高阶神经元的峰电位间隔将最大限度地保留轴突起始段峰电位间隔中包含的信息。我们的实验是使用在软件环境GENESIS(通用神经模拟系统)中构建的有髓轴突计算机模型进行的。我们改变轴突直径、髓鞘厚度、轴突长度、刺激电流和通道分布,以确定这些参数如何影响噪声在峰电位传播中的作用,进而影响峰电位间隔的保持。我们的结果以峰电位传播时间的标准差表示,结果表明,用规则的矩形脉冲刺激轴突时,峰电位间隔能以微秒级的精度得以保持。用模拟突触后电流的脉冲刺激轴突时,发现峰电位间隔有更大的变化,但施加的噪声对峰电位间隔抖动的影响大致相同。