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Effect of the Method of Leading on the Recording of the Nerve Fiber Spectrum

机译:导入方法对神经纤维光谱记录的影响

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摘要

A study has been made of the modifications of the shape of a nerve action potential dependent upon the placement of the two electrodes, always necessary for a lead. In a classic diphasic lead separation of the electrodes brings out, in addition to a separation of the phases, the appearance of a positive deflection traceable to the passage of an impulse between the electrodes. This phenomenon, called the lead separation effect (1.s.e.), must be considered as an expression of a feature of normal nerve fiber biophysics. It regularly appears and it can be analyzed with respect to the position of the sink maximum. Also it cannot be eliminated by a block at the second electrode. The advantage of approximating the leads was shown by the absence of a 1.s.e. following spikes recorded by electronic integration of tangents, which with validity can be derived from threshold fibers. Since tangent leads are not adaptable to recording a spectrum, a block at the second electrode is required. The making of such blocks and the configuration of records obtained with them are described. Conditions for an optimal lead, but not an ideal lead, were delimited. In an optimal lead only two major elevations appear in the spectrum of a skin nerve: those known as alpha and delta. A reference to maps of fiber size analyses shows that the fibers in the delta elevation have velocities of conduction slower than they would have if following in linear sequence the fiber diameters belonging to the alpha elevation.
机译:已经研究了取决于两个电极的放置对神经动作电位的形状的修改,这对于引线总是必需的。在经典的两相引线中,除了相的分离之外,电极的分离还引起可追溯到电极之间的脉冲通过的正偏斜的出现。这种现象称为铅分离效应(1.s.e.),必须视为正常神经纤维生物物理特征的一种表达。它定期出现,并且可以根据水槽最大值的位置进行分析。同样,它也不能被第二电极上的障碍物消除。缺少1.s.e.可以显示近似引线的优势。通过切线的电子积分记录的峰值,其有效性可以从阈值纤维得出。由于切线不适合记录光谱,因此需要在第二电极处进行阻挡。描述了此类块的制作以及使用它们获得的记录的配置。限定了最佳引线而不是理想引线的条件。在最佳铅中,在皮肤神经的光谱中仅出现两个主要的升高:被称为α和δ的升高。对纤维尺寸分析图的参考表明,与以线性顺序遵循属于阿尔法高程的纤维直径相比,在Δ高程中的纤维的传导速度要慢。

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