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测量抖动时的陷阱与误差。

Pitfalls and errors in measuring jitter.

作者信息

Stålberg Erik, Sanders Donald B, Kouyoumdjian João Aris

机构信息

Dept of Clin Neurophysiology, Inst of Neurosciences, Uppsala University, Sweden.

Dept of Neurology, Duke University Medical Center, Durham, NC 27710, USA.

出版信息

Clin Neurophysiol. 2017 Nov;128(11):2233-2241. doi: 10.1016/j.clinph.2017.09.001. Epub 2017 Sep 21.

Abstract

The safety factor of neuromuscular transmission can be assessed by measuring the neuromuscular jitter, which reflects the time variability of processes in the motor end-plate. Jitter is increased in any condition with disturbed end-plate function, such as myasthenic conditions and ongoing reinnervation. Jitter is increasingly being measured with concentric needle (CN) electrodes, which are more prone to artefacts than single fiber EMG recordings. The objective of this review is to identify and demonstrate pitfalls that can be seen with CN jitter measurements, made with both voluntary activation and electrical stimulation. With voluntary activation, errors are caused by poor signal quality; inappropriate time reference points on the signal; an irregular firing rate; and signals with dual latencies, i.e., "flip-flop." With electrical stimulation, additional errors result from insufficient stimulation intensity; from abrupt change in firing rate; and from axon reflexes. Many pitfalls cannot be avoided during recording and can only be detected during post-processing. It is critical to be aware of these artefacts when measuring jitter with CN electrodes.

摘要

神经肌肉传递的安全系数可通过测量神经肌肉颤抖来评估,神经肌肉颤抖反映了运动终板中过程的时间变异性。在任何终板功能受到干扰的情况下,如重症肌无力状态和正在进行的神经再支配,颤抖都会增加。目前越来越多地使用同心针电极来测量颤抖,与单纤维肌电图记录相比,同心针电极更容易产生伪迹。本综述的目的是识别并展示在使用同心针电极进行自愿激活和电刺激时,测量神经肌肉颤抖可能出现的陷阱。在自愿激活时,错误是由信号质量差、信号上不适当的时间参考点、不规则的放电频率以及具有双重潜伏期的信号(即“触发翻转”)引起的。在电刺激时,额外的错误是由刺激强度不足、放电频率突然变化以及轴突反射引起的。许多陷阱在记录过程中无法避免,只能在后期处理时检测到。使用同心针电极测量颤抖时,意识到这些伪迹至关重要。

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