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运动系统中的随机共振:噪声对猫脊髓单突触反射通路的影响。

Stochastic resonance in the motor system: effects of noise on the monosynaptic reflex pathway of the cat spinal cord.

作者信息

Martínez Lourdes, Pérez Toni, Mirasso Claudio R, Manjarrez Elias

机构信息

Instituto de Fisiología, Benemérita Universidad Autónoma de Puebla. 14 sur 6301, Col. San Manuel. Apartado Postal 406, C.P. 72570. Puebla, Pue., México.

出版信息

J Neurophysiol. 2007 Jun;97(6):4007-16. doi: 10.1152/jn.01164.2006. Epub 2007 Apr 11.

Abstract

In sensory systems, the presence of a particular nonzero level of noise may significantly enhance the ability of an individual to detect weak sensory stimuli through a phenomenon known as stochastic resonance (SR). The aim of this study was to demonstrate if such phenomenon is also exhibited by the motor system; in particular, in the Ia-motoneuron synapse of the cat spinal cord. Monosynaptic reflexes elicited by periodic electrical stimulation to the medial gastrocnemius nerve were recorded in the L(7) ventral root (or in single motoneurons) of decerebrated cats. Random stretches (mechanical noise) were applied to the lateral gastrocnemius plus soleus muscle by means of a closed-loop mechanical stimulator-transducer. In all cats, we observed the SR phenomenon. The amplitude of the monosynaptic reflexes (or number of action potentials recorded in the motoneurons) evoked by the weak electrical stimuli applied to the medial gastrocnemius nerve were an inverted U-like function of the mechanical noise applied to the lateral gastrocnemius plus soleus muscle. A significant maximum value in the amplitude of the monosynaptic responses was reached with a particular noise amplitude value. Numerical simulations on a model of the monosynaptic reflex pathway qualitatively reproduce this stochastic resonance behavior. We conclude that the monosynaptic reflex response elicited by Ia afferents is optimized by the noisy stretching of a synergistic muscle. Our study provides the first direct demonstration that the motor system, and not only the sensory systems, exhibits the SR phenomenon.

摘要

在感觉系统中,特定非零水平噪声的存在可能会通过一种称为随机共振(SR)的现象显著增强个体检测微弱感觉刺激的能力。本研究的目的是证明运动系统是否也表现出这种现象;特别是在猫脊髓的Ia运动神经元突触中。在去大脑猫的L(7)腹根(或单个运动神经元)中记录由周期性电刺激内侧腓肠神经引起的单突触反射。通过闭环机械刺激 - 换能器对外侧腓肠肌加比目鱼肌施加随机拉伸(机械噪声)。在所有猫中,我们都观察到了随机共振现象。施加于内侧腓肠神经的弱电刺激所诱发的单突触反射的幅度(或运动神经元中记录的动作电位数量)是施加于外侧腓肠肌加比目鱼肌的机械噪声的倒U形函数。在特定噪声幅度值时,单突触反应的幅度达到显著最大值。单突触反射通路模型的数值模拟定性地再现了这种随机共振行为。我们得出结论,Ia传入神经引发的单突触反射反应通过协同肌的噪声拉伸得到优化。我们的研究首次直接证明运动系统而非仅感觉系统表现出随机共振现象。

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