首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Characterization of high capacitance electrodes for the application of direct current electrical nerve block
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Characterization of high capacitance electrodes for the application of direct current electrical nerve block

机译:用于直流电神经阻滞的高电容电极的表征

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摘要

Direct current (DC) can briefly produce a reversible nerve conduction block in acute experiments. However, irreversible reactions at the electrode-tissue interface have prevented its use in both acute and chronic settings. A high capacitance material (platinum black) using a charge-balanced waveform was evaluated to determine whether brief DC block (13 s) could be achieved repeatedly (> 100 cycles) without causing acute irreversible reduction in nerve conduction. Electrochemical techniques were used to characterize the electrodes to determine appropriate waveform parameters. In vivo experiments on DC motor conduction block of the rat sciatic nerve were performed to characterize the acute neural response to this novel nerve block system. Complete nerve motor conduction block of the rat sciatic nerve was possible in all experiments, with the block threshold ranging from -0.15 to -3.0 mA. DC pulses were applied for 100 cycles with no nerve conduction reduction in four of the six platinum black electrodes tested. However, two of the six electrodes exhibited irreversible conduction degradation despite charge delivery that was within the initial Q (capacitance) value of the electrode. Degradation of material properties occurred in all experiments, pointing to a possible cause of the reduction in nerve conduction in some platinum black experiments .
机译:在急性实验中,直流电(DC)可以短暂地产生可逆的神经传导阻滞。然而,在电极-组织界面的不可逆反应阻止了它在急性和慢性环境中的使用。对使用电荷平衡波形的高电容材料(铂黑)进行了评估,以确定是否可以反复(> 100个循环)实现短暂的DC阻滞(13 s),而不会导致神经传导的急性不可逆减少。电化学技术用于表征电极以确定适当的波形参数。进行了大鼠坐骨神经直流运动传导阻滞的体内实验,以表征对该新型神经阻滞系统的急性神经反应。在所有实验中都可能完全阻断大鼠坐骨神经的神经运动传导阻滞,阻滞阈值范围为-0.15至-3.0 mA。在六个被测铂黑电极中的四个中,施加DC脉冲100个周期,且神经传导没有减少。然而,尽管电荷输送在电极的初始Q(电容)值之内,六个电极中的两个仍表现出不可逆的导电性能下降。在所有实验中均发生材料性能下降,这表明某些铂黑实验中神经传导减少的可能原因。

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