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A novel waveform for No-Onset nerve block combining direct current and kilohertz frequency alternating current

机译:直流电与千赫兹频率交流电相结合的无发作性神经阻滞波形

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Kilohertz frequency alternating current (KHFAC) has been shown to produce a fast acting, reversible nerve block. The principal drawback to this technique is a short, but intense burst of firing at the initiation of the KHFAC which is referred to as the “onset response”. The “onset response” can be eliminated by the use of a second electrode which delivers direct current (DC) briefly during the onset duration. However, the DC cannot be delivered for a sufficiently long time to suppress the onset without causing damage to the nerve. High surface area electrodes have been developed which can be used to deliver DC for long enough to eliminate the onset without causing damage. Furthermore, instead of using multiple electrodes to create a no onset block, the DC and KHFAC are combined in novel waveform which can be output on a single monopolar electrode. This novel waveform has been demonstrated to prevent onset in both simulation and in an in vivo rat sciatic nerve model.
机译:千赫兹频率交流电(KHFAC)已显示产生快速作用的可逆神经阻滞。该技术的主要缺点是在KHFAC启动时会发生短暂但强烈的点火脉冲,这被称为“启动响应”。可以通过使用第二个电极消除“启动响应”,该第二个电极在启动期间会短暂地输送直流电(DC)。然而,DC不能被递送足够长的时间以抑制发作而不会引起神经损伤。已经开发出高表面积的电极,该电极可用于输送直流足够长的时间,以消除发作而不会造成损坏。此外,不是使用多个电极来创建无起始块,而是将DC和KHFAC组合成新颖的波形,可以在单个单极电极上输出该波形。已经证明了这种新颖的波形在模拟和体内大鼠坐骨神经模型中均可以防止发作。

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