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Axonal dysfunction, dysmyelination, and conduction failure in hereditary neuropathy with liability to pressure palsies

机译:遗传性神经病的轴突功能障碍,髓鞘异常和传导衰竭,并伴有压力性麻痹

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摘要

Introduction: Patients with hereditary neuropathy with liability to pressure palsies (HNPP) manifest with episodes of focal paresis when exposed to mechanical stress, although the basis for vulnerability to conduction block remains relatively unexplained. Methods: Axonal excitability techniques were utilized to provide insights into pathophysiological mechanisms in 13 HNPP patients, stimulating median motor and sensory axons at the wrist. Results: In HNPP, distal latencies were prolonged, and motor and sensory amplitudes were reduced. Threshold was increased. Depolarizing and hyperpolarizing electrotonus was greater, and resting current-threshold slope was reduced. There were greater threshold changes in superexcitability, and refractoriness was decreased. Conclusions: Taken together, excitability testing in patients with HNPP established axonal hyperpolarization in both motor and sensory axons that may be attributable to changes in nerve architecture. In turn, the hyperpolarized resting membrane potential in HNPP may be a major predisposing factor for development of conduction block with mechanical stresses.
机译:简介:患有机械性神经病并伴有压力性麻痹(HNPP)的患者在受到机械压力时表现为局灶性麻痹发作,尽管尚难以解释传导阻滞的基础。方法:利用轴突兴奋性技术深入了解13例HNPP患者的病理生理机制,刺激腕部正中运动轴突和感觉轴突。结果:在HNPP中,远端潜伏期延长,运动和感觉振幅降低。阈值增加。去极化和超极化肌电张力更大,并且静电流阈值斜率减小。超兴奋性的阈值变化更大,耐火度降低。结论:综上所述,HNPP患者的兴奋性测试建立了运动轴突和感觉轴突的轴突超极化,这可能归因于神经结构的改变。反过来,HNPP中的超极化静息膜电位可能是发展具有机械应力的传导阻滞的主要诱因。

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