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中枢和外周产生的神经肌肉振荡之间的相互作用。

Interactions between centrally and peripherally generated neuromuscular oscillations.

作者信息

Oğuztöreli M N, Stein R B

出版信息

J Math Biol. 1979 Jan 23;7(1):1-30. doi: 10.1007/BF00276411.

Abstract

An experimentally based model of the mammalian neuromuscular system has been extended to include the interaction of sinusoidal inputs generated within the central nervous system and those produced peripherally by reflex pathways, together with muscle properties and external loads. Multiple reflex pathways and pathways having acceleration as well as velocity and length sensitivity and considered. The responses are analyzed for brief inputs (Dirac delta-functions), sinusoidal driving functions and mixtures of the two over ranges in which the model behaves either linearly or non-linearly. Approximate solutions are derived for the non-linear range, and exact numerical solutions are computed for a few examples within the linear range. The extent to which brief inputs can reset ongoing oscillations and the extent to which sinusoidal inputs can entrain these oscillations are of particular interest.

摘要

一个基于实验的哺乳动物神经肌肉系统模型已经得到扩展,以包括中枢神经系统内产生的正弦输入与反射通路在外周产生的正弦输入之间的相互作用,以及肌肉特性和外部负荷。考虑了多个反射通路以及具有加速度、速度和长度敏感性的通路。针对短暂输入(狄拉克δ函数)、正弦驱动函数以及两者在模型表现为线性或非线性的范围内的混合情况,对响应进行了分析。推导了非线性范围内的近似解,并在线性范围内计算了几个示例的精确数值解。特别令人感兴趣的是短暂输入能够重置正在进行的振荡的程度以及正弦输入能够夹带这些振荡的程度。

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