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视上核中峰电位活动的评估。

Assessment of spike activity in the supraoptic nucleus.

作者信息

Bhumbra G S, Inyushkin A N, Dyball R E J

机构信息

Department of Anatomy, University of Cambridge, Downing Street, Cambridge, UK.

出版信息

J Neuroendocrinol. 2004 Apr;16(4):390-7. doi: 10.1111/j.0953-8194.2004.01166.x.

Abstract

Novel approaches to the characterization of coding carried by spike trains are discussed. Measuring firing frequency alone may only partially reflect spike patterning, and can only quantify changes of the most obvious kind. We have devised a method that combines probabilistic and information approaches to quantify the variability of the interspike intervals in a way that is independent of spike frequency. To illustrate the technique, the firing of an oxytocin cell and a vasopressin cell were compared before and after osmotic stimulation. A bimodal lognormal function was fitted to the interspike interval histograms. The entropy of the log interval histogram was used to measure the variability of intervals and to reflect the coding capacity of the cell per spike. A perfect metronome shows no variability in interval and thus has no greater coding capacity than is conveyed by its frequency, whereas the variability of intervals of magnocellular neurones means that their irregular activity has greater potential for coding. While the mean spike frequency increased in both the oxytocin and vasopressin cells in response to osmotic stimulation, the changes in their irregularity showed differences. Osmotic stimulation reduced the entropy of the oxytocin cell, reflecting an increase in the regularity of its spike activity. Conversely, osmotic stimulation had little effect on the entropy of the vasopressin cell. Such differences are not evident from a simple inspection of ratemeter activity. The comparison highlights the limitations of mean spike frequency as a measure of spike coding. Parameters based on the interspike intervals constitute informative measures of spike activity that allow objective comparisons to be made between the activity under different physiological conditions.

摘要

本文讨论了表征尖峰序列编码的新方法。仅测量放电频率可能只能部分反映尖峰模式,并且只能量化最明显类型的变化。我们设计了一种方法,该方法结合了概率和信息方法,以一种独立于尖峰频率的方式量化峰峰间隔的变异性。为了说明该技术,比较了渗透刺激前后催产素细胞和加压素细胞的放电情况。对峰峰间隔直方图拟合了双峰对数正态函数。对数间隔直方图的熵用于测量间隔的变异性,并反映每个尖峰的细胞编码能力。一个完美的节拍器在间隔上没有变异性,因此其编码能力不会超过其频率所传达的编码能力,而大细胞神经元间隔的变异性意味着它们的不规则活动具有更大的编码潜力。虽然在渗透刺激下催产素细胞和加压素细胞的平均尖峰频率均增加,但其不规则性的变化存在差异。渗透刺激降低了催产素细胞的熵,反映出其尖峰活动规律性的增加。相反,渗透刺激对加压素细胞的熵影响很小。从简单检查计数率活动中,这些差异并不明显。该比较突出了平均尖峰频率作为尖峰编码度量的局限性。基于峰峰间隔的参数构成了尖峰活动的信息性度量,使得能够在不同生理条件下的活动之间进行客观比较。

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