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Spike initiation by transmembrane current: a white-noise analysis.

机译:跨膜电流引发尖峰:白噪声分析。

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摘要

1. Those features of a transmembrane current correlated with spike initiation were examined in Aplysia neurones using a Gaussian white-noise stimulus. This stimulus has the advantages that it presents numerous wave forms in random order without prejudgement as to their efficacies, and that it allows straightforward statistical calculations. 2. Stimulation with a repeating segment of Gaussian white-noise current revealed remarkable invariance in the firing times of the tested neurones and indicated a high degree of reliability of their response. 3. Frequencies (less than 5 Hz) involved in spike triggering propagated faithfully for up to several millimetres, justifying intrasomatic current injection to examine spike initiation at the trigger locus. 4. Examination of current wave forms preceding spikes indicated that a wide variety could be effective. Hence, a statistical analysis was performed, including computation of probability densities, averages, standard deviations and correlation coefficients of pairs of current values. Each statistic was displayed as a function of time before the spike. 5. The average current trajectory preceding a spike was multiphasic and depended on the presence and polarity of a d.c. bias. An early relatively small inward- or outward-going phase was followed by a large outward phase before the spike. The early phase tended to oppose the polarity of the d.c. bias. 6. The late outward phase of the average current trajectory reached a maximum 40--75 msec before triggering the action potential (AP) and returned to near zero values at the moment of triggering. The fact that the current peak occurs in advance of the AP may be partially explained by a phase delay between the transmembrane current and potential. The failure of the average current trajectory to return to control values immediately following the peak argues for a positive role of the declining phase in spike triggering. 7. Probability densities preceding spikes were Gaussian, indicating that the average was also the most probable value. Although the densities were broad, confirming that spikes were preceded by a wide variety of current wave forms, their standard deviations were reduced significantly with respect to controls, suggesting preferred status of the average current trajectory in spike triggering. 8. The matrix of correlation coefficients between current pairs suggested that spikes tended to be preceded by wave forms that in part kept close to the average current trajectory and in part preserved its shape. 9. The average first and second derivatives of spike-evoking epochs revealed that current slope and acceleration, respectively, were most crucial in the last 200 msec before spike triggering, and that these dynamic stimulus components were more important for a cell maintained under a depolarizing, rather than a hyperpolarizing bias. 10...
机译:1.使用高斯白噪声刺激在海葵神经元中检查与尖峰启动相关的跨膜电流的那些特征。这种刺激的优点是,它可以随机顺序显示多种波形,而无需对其效果进行预先判断,并且可以进行简单的统计计算。 2.用重复的高斯白噪声电流段进行的刺激显示,被测神经元的放电时间具有明显的不变性,并表明其响应具有高度的可靠性。 3.涉及尖峰触发的频率(小于5 Hz)忠实地传播了多达几毫米,证明了进行体内电流注入以检查触发点处的尖峰启动是正确的。 4.检查尖峰之前的电流波形表明,各种各样的方法都可以有效。因此,进行了统计分析,包括概率密度,平均值,标准差和当前值对的相关系数的计算。每个统计数据都显示为峰值之前的时间的函数。 5.尖峰之前的平均电流轨迹是多相的,并且取决于直流电的存在和极性。偏压。在峰值之前,先是一个相对较小的向内或向外阶段,随后是一个较大的向外阶段。早期阶段倾向于反对直流电的极性。偏压。 6.在触发动作电位(AP)之前,平均电流轨迹的后期向外阶段达到最大40--75毫秒,并在触发时返回到接近零的值。电流峰值出现在AP之前的事实可以部分由跨膜电流和电位之间的相位延迟来解释。平均电流轨迹未能在峰值之后立即返回到控制值,这说明下降阶段在尖峰触发中具有积极作用。 7.峰值之前的概率密度是高斯分布,表明平均值也是最可能的值。尽管密度很宽,这证实了尖峰之前有各种各样的电流波形,但相对于对照,它们的标准偏差已大大降低,这表明尖峰触发中平均电流轨迹处于首选状态。 8.电流对之间的相关系数矩阵表明,峰值趋于出现波形,波形的一部分保持接近平均电流轨迹,一部分保持其形状。 9.诱发峰值的平均一阶和二阶导数表明,在触发峰值之前的最后200毫秒内,电流斜率和加速度分别是最关键的,并且这些动态刺激分量对于维持在去极化状态下的细胞更为重要。 ,而不是超极化的偏见。 10 ...

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