Gray P R
Center for Communication Sciences, Research Laboratory of Electronics, Massachusetts Institute of Technology, Cambridge, MA, and the Eaton-Peabody Laboratory of Auditory Physiology, Massachusetts Eye and Ear Infirmary, Boston, Massachusetts, USA.
Biophys J. 1967 Nov;7(6):759-77. doi: 10.1016/S0006-3495(67)86621-9. Epub 2008 Dec 31.
With the objective of separating stimulus-related effects from refractory effects in neuronal spike data, various conditional probability analyses have been developed. These analyses are introduced and illustrated with examples based on electrophysiological data from auditory nerve fibers. The conditional probability analyses considered here involve the estimation of the conditional probability of a firing in a specified time interval (defined relative to the time of the stimulus presentation), given that the last firing occurred during an earlier specified time interval. This calculation enables study of the stimulus-related effects in the spike data with the time-since-the-last-firing as a controlled variable. These calculations indicate that auditory nerve fibers "recover" from the refractory effects that follow a firing in the following sense: after a "recovery time" of approximately 20 msec, the firing probabilities no longer depend on the time-since-the-last-firing. Probabilities conditional on this minimum time since the last firing are called "recovered probabilities." The recovered probabilities presented in this paper are contrasted with the corresponding poststimulus time histograms, and the differences are related to the refractory properties of the nerve fibers.
为了从神经元放电数据中分离出与刺激相关的效应和不应期效应,人们开发了各种条件概率分析方法。本文将基于听神经纤维的电生理数据,通过示例介绍并说明这些分析方法。这里所考虑的条件概率分析涉及到在给定最后一次放电发生在较早指定时间间隔内的情况下,估计在指定时间间隔(相对于刺激呈现时间定义)内放电的条件概率。这种计算使得能够以自最后一次放电以来的时间作为控制变量,研究放电数据中与刺激相关的效应。这些计算表明,听神经纤维在以下意义上从一次放电后的不应期效应中“恢复”:在大约20毫秒的“恢复时间”之后,放电概率不再依赖于自最后一次放电以来的时间。基于自最后一次放电以来的这个最短时间的条件概率被称为“恢复概率”。本文给出的恢复概率与相应的刺激后时间直方图进行了对比,并且这些差异与神经纤维的不应期特性相关。