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Improved estimates of conduction velocity distributions using single unit action potentials.

机译:使用单个单位动作电位改进的传导速度分布估算。

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摘要

Single unit potentials were recorded from sural and medial gastrocnemius nerves. Action potential amplitude, integrated area and half-width (duration) were approximately proportional to conduction velocity, raised to the powers 1.5, 1 and -0.5 respectively with the sural nerve, and 2, 1.5 and -0.5 for the medial gastrocnemius nerve. These empirical relationships were applied to the computation of whole nerve conduction velocity distributions based on the relative number of single unit potentials of various conduction latencies required to reconstruct a recorded compound action potential. Conduction velocity distributions, which were converted to fibre diameter distributions, were in close agreement with the corresponding distributions determined histologically.
机译:从腓肠腓肠神经和内侧腓肠神经记录单个单位电位。动作电位振幅,积分面积和半角宽度(持续时间)与传导速度大致成正比,腓肠神经分别提高至幂1.5、1和-0.5,内侧腓肠神经分别提高至2、1.5和-0.5。这些经验关系基于重建记录的复合动作电位所需的各种传导潜伏期的单个单位电位的相对数量,被用于计算整个神经传导速度分布。转换成纤维直径分布的传导速度分布与组织学确定的相应分布非常一致。

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