Grandori F, Pedotti A
Biol Cybern. 1982;46(1):7-16. doi: 10.1007/BF00335347.
This article describes a mathematical model of the Pacinian corpuscle based on the analysis of the available experimental data and on previous theoretical research. The model includes the main anatomofunctional constituents of the corpuscle: the capsula and the mechano-to-neural transduction; its structure accounts for the formation of the receptor potential and of the spikes on the nerve terminal. Comparison of the theoretical predictions with the experimental results, in response to different types of stimuli provides a substantial validation of the model and an explanation for the basic aspects of the transduction, in particular for: a) the receptor potential time course for isolated stimuli; b) the frequency response, in terms of receptor potential; c) the frequency threshold curve for the spikes; d) the firing rate, I.S.I. and P.S.T. histograms and the synchronization coefficient, in response to sustained sinusoidal inputs. Possible lines for future experimental research are suggested from the model predictions.
本文基于对现有实验数据的分析以及先前的理论研究,描述了帕西尼小体的数学模型。该模型包括小体的主要解剖功能成分:被膜和机械-神经转导;其结构解释了受体电位和神经末梢上动作电位的形成。将理论预测结果与针对不同类型刺激的实验结果进行比较,为该模型提供了充分的验证,并解释了转导的基本方面,特别是:a)孤立刺激下的受体电位时间进程;b)受体电位方面的频率响应;c)动作电位的频率阈值曲线;d)响应持续正弦输入时的放电率、峰峰间期和脉冲序列直方图以及同步系数。从模型预测结果中提出了未来实验研究可能的方向。