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Quantification of Neural Conduction Block on the Rat Sciatic Nerve based on EMG Response

机译:基于EMG响应的大鼠坐骨神经中神经传导块的定量

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Neural conduction block performed by balanced-charge kilohertz frequency alternating currents (KHFAC) has been identified as a potential technique for therapy delivery in different clinical setups. The underlying mechanisms that contribute to this phenomenon have been studied through computational models and animal experiments. However, the optimal stimulation parameters to achieve axonal conduction block are difficult to define, since they depend on the species, the nerve being targeted, as well as the technical and experimental setup. This study proposes an experimental setup along with an original data processing approach for the quantification of the effectiveness of neural conduction block. Experiments were performed on the sciatic nerve of two Sprague-Dawley rats, by evaluating different groups of stimulation parameters with varying amplitudes and frequencies, ranging from 1 to 10 mA and from 2 to 10 kHz, respectively. Results suggest that the effectiveness of axonal conduction block strongly depends on the selection of the stimulation parameters. In this work, more effective blockages were achieved for frequencies around 4 kHz and within an approximate amplitude range of 2 to 8 mA.
机译:通过平衡充电千赫兹频率交流电流(KHFAC)进行的神经传导块已被鉴定为不同临床设置中治疗递送的潜在技术。通过计算模型和动物实验研究了对这种现象有助于这种现象的潜在机制。然而,实现轴突导却块的最佳刺激参数难以定义,因为它们依赖于物种,所以神经是针对性的,以及技术和实验设置。该研究提出了一种实验设置以及用于量化神经传导块的有效性的原始数据处理方法。通过评价不同振荡参数的不同刺激参数,分别评估不同振荡参数的不同刺激参数进行实验,分别从1至10mA和2至10kHz的不同刺激参数进行评估。结果表明,轴突导通块的有效性强烈取决于刺激参数的选择。在这项工作中,为4 kHz左右的频率实现了更有效的堵塞,并且在2到8 mA的近似幅度范围内。

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