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去大脑猫的腓肠肌随机拉伸刺激下,骨骼肌运动神经元的膜电位变化。

Membrane potential changes of skeletomotor neurons in response to random stretches of the triceps surae muscles in decerebrate cats.

作者信息

Boskov D, Jocic M, Jovanovic K, Ljubisavljevic M, Anastasijevic R

机构信息

University of Illinois, Chicago 60612.

出版信息

Biol Cybern. 1994;71(4):333-9. doi: 10.1007/BF00239620.

Abstract

The properties of membrane potential changes of skeletomotor neurons (S, FR, and FF) innervating triceps surae muscles during pseudorandom stretching of these muscles were studied in decerebrate cats. Peak amplitudes of pseudorandom muscle stretches ranged from 119 microns to 4.15 mm peak-to-peak. Sequences of ten identical stretching periods were applied for averaging. Shapes of membrane potential changes and probability density distribution of amplitudes of the input and output signals and power spectra suggest that the skeleto-motor neuron membrane has nonlinear properties. First- and second-order Wiener kernels were determined by applying the cross-correlation (Lee-Schetzen) method. The results suggest that the transfer function between muscle stretches and subthreshold membrane potentials is a Wiener-type cascade. This cascade is consistent with a linear, second-order, underdamped transfer function followed by a simple quadratic nonlinearity [linear (L) system followed by nonlinear (N) system, or LN cascade]. Including the nonlinear component calculated from the second-order Wiener kernel improved the model significantly over its linear counterpart, especially in S-type motoneurons. Qualitatively similar results were obtained with all types of motoneurons studied.

摘要

在去大脑猫中研究了支配腓肠肌的骨骼肌运动神经元(S、FR和FF)在这些肌肉伪随机拉伸过程中膜电位变化的特性。伪随机肌肉拉伸的峰值幅度范围为峰峰值119微米至4.15毫米。应用十个相同拉伸周期的序列进行平均。膜电位变化的形状、输入和输出信号幅度的概率密度分布以及功率谱表明,骨骼肌运动神经元膜具有非线性特性。通过应用互相关(Lee-Schetzen)方法确定一阶和二阶维纳核。结果表明,肌肉拉伸与阈下膜电位之间的传递函数是维纳型级联。该级联与线性、二阶、欠阻尼传递函数一致,随后是简单的二次非线性[线性(L)系统后跟非线性(N)系统,即LN级联]。包括从二阶维纳核计算出的非线性成分,使模型相对于其线性对应模型有显著改进,特别是在S型运动神经元中。在所研究的所有类型的运动神经元中都获得了定性相似的结果。

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