Decrease in nerve temperature: a model for increased temporal dispersion

G.J.M Rutten, R.D.A Gaasbeek, H Franssen
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引用次数: 16

Abstract

A decrease in nerve temperature causes a proportional decrease in conduction velocity which, in percentage terms, is equal for all nerve fibers. The absolute decrease in conduction velocity is larger for faster conducting nerve fibers. This results in a compression and a shift to lower values of the conduction velocity distribution and an increase in temporal dispersion. The purpose of this study was to determine if these effects could be detected by a combination of two collision techniques designed to obtain the motor conduction velocity distribution and refractory period distribution. In 12 healthy volunteers we measured the conduction velocity distribution in the median nerve at nerve temperatures of 25 and 40°C. The results showed that our method could detect the predicted changes in conduction velocity distribution and temporal dispersion. We conclude that temperature change is a model that can be used to study temporal dispersion. This may be a first step towards distinguishing between the effects of conduction block and (abnormal) temporal dispersion in demyelinated nerve fibers.

神经温度降低:颞弥散度增加的模型
神经温度的降低导致传导速度成比例的降低,以百分比计算,所有神经纤维的传导速度都是相等的。传导速度越快的神经纤维,传导速度的绝对下降幅度越大。这导致传导速度分布的压缩和向较低值的转移以及时间色散的增加。本研究的目的是确定这些影响是否可以通过两种碰撞技术的组合来检测,以获得电机传导速度分布和不应期分布。在12名健康志愿者中,我们测量了神经温度为25°C和40°C时正中神经的传导速度分布。结果表明,我们的方法可以检测到传导速度分布和时间色散的预测变化。我们得出结论,温度变化是一个可以用来研究时间色散的模型。这可能是区分传导阻滞和脱髓鞘神经纤维(异常)颞弥散影响的第一步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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