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Peripheral nerve axonal excitability studies: expanding the neurophysiologist’s armamentarium

机译:周围神经轴突兴奋性研究:扩大神经生理学家的武器库

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Nerve excitability studies have emerged as a recent novel non-invasive technique that offers complementary information to that provided by more conventional nerve conduction studies, the latter which provide only limited indices of peripheral nerve function. Such novel tools allow for the assessment of peripheral axonal biophysical properties that include ion channels, energy-dependent pumps and membrane potential in health and disease. With improvements in technique and development of protocols, a typical study can be completed in a short period of time and rapid measurement of multiple excitability indices can be achieved that provide insight into different aspects of peripheral nerve function. The advent of automated protocols for the assessment of nerve excitability has promoted their use in previous studies investigating disease pathophysiology such as in metabolic, toxic and demyelinating neuropathies, amyotrophic lateral sclerosis, stroke, spinal cord injury and inherited channelopathies. In more recent years, the use of nerve excitability studies have additionally provided insights into the pathophysiological mechanisms underlying cerebellar disorders that include stroke and familial cerebellar ataxias such as episodic ataxia types 1 and 2. Moreover, this technique may have diagnostic and therapeutic implications that may encompass a broader range of neurodegenerative cerebellar ataxias in years to come. In the foreseeable future, this technique may eventually be incorporated into clinical practice expanding the currently available armamentarium to the neurophysiologist.
机译:神经兴奋性研究已经作为一种最新的非侵入性技术出现,该技术提供了与更常规的神经传导研究所提供的信息互补的信息,后者仅提供了有限的周围神经功能指标。这种新颖的工具可以评估周围的轴突生物物理特性,包括在健康和疾病中的离子通道,能量依赖性泵和膜电位。随着技术的改进和协议的发展,典型的研究可以在短时间内完成,并且可以快速测量多种兴奋性指标,从而洞悉周围神经功能的各个方面。用于评估神经兴奋性的自动化方案的出现促进了它们在先前研究疾病病理生理的研究中的应用,例如在代谢,毒性和脱髓鞘性神经病,肌萎缩性侧索硬化,中风,脊髓损伤和遗传性通道病中的研究。近年来,神经兴奋性研究的使用还为小脑疾病的潜在病理生理机制提供了见解,这些疾病包括中风和家族性小脑共济失调,例如发作性共济失调1和2型。此外,该技术可能具有诊断和治疗意义,可能涵盖了未来几年内广泛的神经退行性小脑共济失调。在可预见的将来,该技术可能最终会结合到临床实践中,从而将当前可用的武器库扩展到神经生理学家。

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