Nerve membrane excitability testing.

W J Z'Graggen, H Bostock
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引用次数: 11

Abstract

Routine motor nerve conduction studies measure latencies, conduction velocities and amplitudes of compound action potentials. These measurements can be very useful in defining the pathology, while they provide little insight into the underlying disease mechanisms. Increasingly, the technique of 'threshold tracking' is being used in research and clinical studies on large myelinated axons. Nerve excitability testing is a non-invasive approach in investigating the pathophysiology of peripheral nerve disorders, which determines the electrical properties of the nerve membrane at the site of stimulation. We have found evidence that in patients with critical illness polyneuropathy peripheral nerves are depolarized. The correlations with serum factors suggest that this membrane depolarization is related to endoneurial hyperkalemia and/or hypoxia. While other mechanisms of depolarization may well be involved, the degree to which potential-sensitive nerve excitability indices are related to serum potassium and bicarbonate suggests that other factors, independent of potassium and acid-base balance, are likely to be of relatively minor significance.

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神经膜兴奋性测试。
常规运动神经传导研究测量复合动作电位的潜伏期、传导速度和振幅。这些测量在定义病理学方面非常有用,但它们对潜在的疾病机制提供的见解很少。越来越多的“阈值跟踪”技术被用于大髓鞘轴突的研究和临床研究。神经兴奋性测试是研究周围神经疾病病理生理的一种非侵入性方法,它确定了神经膜在刺激部位的电特性。我们已经发现证据表明,在重症多发性神经病患者周围神经去极化。与血清因子的相关性表明,这种膜去极化与神经内膜高钾血症和/或缺氧有关。虽然去极化可能涉及其他机制,但电位敏感神经兴奋性指数与血清钾和碳酸氢盐的关系程度表明,其他独立于钾和酸碱平衡的因素可能相对次要。
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