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首页> 外文期刊>Journal of Integrative Neuroscience >Mechanisms defining the action potential abnormalities in simulated amyotrophic lateral sclerosis
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Mechanisms defining the action potential abnormalities in simulated amyotrophic lateral sclerosis

机译:定义模拟肌萎缩性侧索硬化症中动作电位异常的机制

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The present study investigates action potential abnormalities obtained in simulated cases of three progressively greater degrees of uniform axonal dysfunctions. The kinetics of the currents, defining the action potential propagation through the human motor nerve in the normal and abnormal cases, are also given and discussed. These computations use our previous multi-layered model of the myelinated motor axon, without taking into account the aqueous layers within the myelin sheath. The results show that the classical "transient" Na+ current contributes mainly to the action potential generation in the nodal segments, as the contribution of the nodal fast and slow potassium currents to the total nodal ionic current is negligible. However, the ionic channels beneath the myelin sheath are insensitive to the short-lasting current stimuli and do not contribute to action potential generation in the internodal compartments along the fibre length. The slight changes obtained in thecurrents underlying the generated action potentials in the three amylotropic lateral sclerosis cases are consistent with the effect of uniform axonal dysfunction along the fibre length. Nevertheless that the uniform axonal dysfunction progressively increases in the nodal and internodal segments of each next simulated amylotropic lateral sclerosis case, the action potentials cannot be regarded as definitive indicators for the progressive degrees of this disease.
机译:本研究调查了在三个逐步更大程度的均匀轴突功能障碍的模拟病例中获得的动作电位异常。还给出并讨论了在正常和异常情况下通过人体运动神经传播的动作电位传播的电流动力学。这些计算使用了我们以前的髓鞘运动轴突的多层模型,而没有考虑髓鞘内的水层。结果表明,经典的“瞬态” Na +电流主要有助于节段中动作电位的产生,因为节快速和慢钾电流对总节离子电流的贡献可忽略不计。但是,髓鞘下方的离子通道对持续时间短的电流刺激不敏感,并且对沿纤维长度的节间隔室中的动作电位产生没有贡献。在三种淀粉样变性侧索硬化病例中,在产生的动作电位下的电流中获得的微小变化与沿纤维长度的均匀轴突功能障碍的影响一致。然而,在每个接下来的模拟性淀粉样变性侧索硬化病例中,淋巴结和节间节中均匀的轴突功能障碍逐渐增加,动作电位不能被视为该疾病进展程度的确定指标。

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