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A new method for spike extraction using velocity selective recording demonstrated with physiological ENG in Rat

机译:使用速度选择性录制的一种新方法,用大鼠生理仪演示

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Background: This paper describes a series of experiments designed to verify a new method of electroneu-rogram (ENG) recording that enables the rate of neural firing within prescribed bands of propagation velocity to be determined in real time. Velocity selective recording (VSR) has been proposed as a solution to the problem of increasing the information available from an implantable neural interface (typically with electrodes in circumferential nerve cuffs) and has been successful in transforming compound action potentials into the velocity domain. New method: The new method extends VSR to naturally-evoked (physiological) ENG in which the rate of neural firing at particular velocities is required in addition to a knowledge of the velocities present in the recording. Results: The experiments, carried out in rats required individual spikes to be distinct and non-overlapping, which could be achieved by a microchannel or small-bore cuff. In these experiments, strands of rat nerve were laid on ten hook electrodes in oil to demonstrate the principle. Comparison with existing method: The new method generates a detailed overview of the firing rates of neurons based on their conduction velocity and direction of propagation. In addition it allows real time working in contrast to existing spike sorting methods using statistical pattern processing techniques. Conclusions: Results show that by isolating neural activity based purely on conduction velocity it was possible to determine the onset of direct cutaneous stimulation of the L5 dermatome.
机译:背景:本文介绍了一系列实验,该实验旨在验证一种新的电气 - ROGRAM(ENG)记录方法,该方法使得能够在规定的传播速度的规定条带内的神经射击速率进行实时确定。速度选择性记录(VSR)已经提出作为提高可植入神经接口可获得的信息的解决方案(通常在圆周神经箍中的电极)上,并且已经成功地将化合物作用电位转化为速度域。新方法:新方法将VSR扩展到自然诱发的(生理学)eng,其中除了记录中存在的速度的知识之外,还需要在特定速度下进行神经烧制的速率。结果:在大鼠中进行的实验需要单独的尖峰是不同的,不重叠,这可以通过微通道或小孔袖口实现。在这些实验中,将大鼠神经的股线铺设在油中的十个钩电极上,以证明原理。与现有方法的比较:新方法基于其传播方向和传播方向,生成神经元的发射速率的详细概述。此外,它允许实时与使用统计模式处理技术的现有尖峰分选方法相反。结论:结果表明,通过纯粹对传导速度分离神经活性,可以确定L5皮肤直接皮肤刺激的开始。

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