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人类神经肌肉疾病中肋间肌纤维的电生理特性

Electrophysiologic properties of intercostal muscle fibers in human neuromuscular diseases.

作者信息

Gruener R, Stern L Z, Markovitz D, Gerdes C

出版信息

Muscle Nerve. 1979 May-Jun;2(3):165-72. doi: 10.1002/mus.880020303.

Abstract

Electrophysiologic properties of biopsied normal and diseased intercostal muscle fibers were examined using intracellular microelectrode techniques. The resting potentials of all diseased muscle fibers were found to be depolarized. Those from Duchenne dystrophy patients showed the largest depolarization, followed by those from patients with myotonic muscular dystrophy, myotonia congenita, and motor neuron disease. All of the diseased fibers except those from myotonia congenita patients demonstrated an imparied ability to generate action potentials. In the latter fibers, the higher-than-normal membrane resistance was associated with hyperexcitability. When the membrane was hyperpolarized to the normal range, however, action potential characteristics in all fibers were near normal, except in motor neuron disease. All action potentials were blocked by tetrodotoxin. These findings--i.e., that all fibers were capable of generating action potentials when hyperpolarized, and that all action potentials were blocked by tetrodotoxin--suggest the relative intactness, in the disease studied here of the regenerative sodium conductance mechanism.

摘要

采用细胞内微电极技术检测活检的正常和患病肋间肌纤维的电生理特性。发现所有患病肌纤维的静息电位均去极化。来自杜兴氏肌营养不良患者的肌纤维去极化程度最大,其次是来自强直性肌营养不良、先天性肌强直和运动神经元疾病患者的肌纤维。除先天性肌强直患者的肌纤维外,所有患病纤维产生动作电位的能力均受损。在后一种纤维中,高于正常的膜电阻与兴奋性过高有关。然而,当膜超极化至正常范围时,除运动神经元疾病外,所有纤维的动作电位特征均接近正常。所有动作电位均被河豚毒素阻断。这些发现——即所有纤维在超极化时都能够产生动作电位,并且所有动作电位都被河豚毒素阻断——表明在这里研究的疾病中再生性钠电导机制相对完整。

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