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Effects of temperature on neuromuscular electrophysiology.

机译:温度对神经肌肉电生理的影响。

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摘要

Like nearly all biologic structures, the peripheral nervous system is remarkably temperature sensitive. Clinical neurophysiologists are most aware of the untoward effects of cooling on nerve conduction studies, including reduced conduction velocity, prolonged distal latency, and increased response amplitude and duration. However, familiarity with the effects of temperature variation on the peripheral nervous system can also provide a deeper understanding of the physiological mechanisms underlying the function of nerve, muscle, and neuromuscular junction in health and disease. Intentional temperature alteration can also improve the diagnostic accuracy of certain electrophysiologic tests, such as the use of heat when performing repetitive nerve stimulation in myasthenia gravis or the use of cold during needle electromyography in some of the myotonic disorders. Finally, extremes of temperature have long been known to produce permanent neuronal dysfunction; recent investigations are beginning to elucidate the mechanisms of such injury. Copyright 2001 American Association of Electrodiagnostic Medicine
机译:与几乎所有生物结构一样,周围神经系统对温度非常敏感。临床神经生理学家最了解冷却对神经传导研究的不利影响,包括传导速度降低,远端潜伏期延长以及反应幅度和持续时间增加。但是,熟悉温度变化对周围神经系统的影响,也可以使人们更深入地了解健康和疾病中神经,肌肉和神经肌肉接头功能的生理机制。故意改变温度还可以提高某些电生理学检查的诊断准确性,例如在重症肌无力中进行重复性神经刺激时使用热量,或在某些肌强直性疾病中在针头肌电图检查期间使用感冒。最后,长期以来人们一直认为极端温度会导致永久性神经元功能障碍。最近的研究开始阐明这种损伤的机制。版权所有2001美国电诊断医学协会

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