首页> 美国卫生研究院文献>The Journal of Neurology and Psychopathology >Experimental studies of the effects of extrinsic factors on conduction in normal and demyelinated nerve. 1. Temperature.
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Experimental studies of the effects of extrinsic factors on conduction in normal and demyelinated nerve. 1. Temperature.

机译:外在因素对正常和脱髓鞘神经传导影响的实验研究。 1.温度。

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摘要

Previous studies in experimentally demyelinated mammalian nerves have demonstrated that a reversible conduction block occurs with small increases of temperature within the animal's normal body temperature range. This phenomenon is believed to be the mechanism for clinical temperature effects in multiple sclerosis. This study examines some quantitative thermal relationships in demyelinated nerves of guinea pigs with experimental allergic neuritis. The observed results in normal and experimental animals are in good agreement with previous theoretical calculations based on the effects of temperature on the voltage and time-dependent behavior of the ionic permeabilities of the nodes of Ranvier. Guinea pigs with increasing motor dysfunction generally exhibited corresponding increases in the overall latency of the conducted action potential, as well as decreases in amplitude. In addition, the lower the initial velocity increment per degree of temperature elevation, the lower was the temperature at which conduction block began to occur. Except for a few cases in which the recorded action potential was bimodal, with response at both normal and prolonged latency, the results tended to indicate a remarkedly uniform involvement of the sciatic nerve within the region of temperature control.
机译:先前在实验中对脱髓鞘的哺乳动物神经进行的研究表明,在动物正常体温范围内,随着温度的小幅升高,会发生可逆的传导阻滞。该现象被认为是多发性硬化症中临床温度影响的机制。这项研究检查了实验性变应性神经炎豚鼠脱髓鞘神经中的一些定量热关系。正常和实验动物的观察结果与以前的理论计算非常吻合,后者基于温度对Ranvier结的离子渗透率的电压和时间相关行为的影响。运动功能障碍增加的豚鼠通常表现出相应动作电位潜伏期的相应增加,以及振幅的降低。另外,每升高温度度的初始速度增量越低,传导阻滞开始发生的温度就越低。除了少数情况下,所记录的动作电位是双峰的,并且在正常和长时间潜伏期都有反应,结果倾向于表明坐骨神经在温度控制区域内明显均匀受累。

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