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Estimation of conduction velocity distribution in human nerve trunks with generalized POCS method

机译:广义POCS法估计人神经干传导速度分布。

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With a generalized method of projections onto convex sets (g-POCS), a distribution of peripheral nerve conduction velocities and a single fiber action potential are deconvolved from two compound action potentials, which are evoked at two stimulating sites, and observed with a surface electrode. The iterative estimation procedure consists of alternating projections of each least square solution onto corresponding constraint set; a non-negative distribution with finite support and a single fiber action potential with finite duration are assumed. The proposed method is applied to measure the distribution of the conduction velocities, and compared with the collision method, resulting high correlation. The method is also applied to measure the distribution of the sensory nerve conduction velocities. The useful information about the peripheral nerve can be obtained by the present method and the application to the clinical field is expected.
机译:使用凸集上的通用投影方法(g-POCS),可以从两个复合动作电位中分解出周围神经传导速度的分布和单个纤维动作电位,这两个复合动作电位在两个刺激部位诱发,并用表面电极观察。迭代估计过程包括将每个最小二乘解在相应约束集上的交替投影;假设具有有限支持的非负分布和具有有限持续时间的单纤维动作电位。将该方法应用于测量传导速度的分布,并与碰撞法进行比较,得出了很高的相关性。该方法还适用于测量感觉神经传导速度的分布。通过本方法可以获得有关周围神经的有用信息,并有望应用于临床。

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