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Axonal stimulation for end-plate jitter studies.

机译:轴突刺激用于终板抖动研究。

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摘要

This single fibre EMG study compares the standard method of neuromuscular jitter measurement in voluntarily activated muscle to that by intramuscular electrical stimulation of motor axons in a group of normal subjects. The latter method avoids the interdischarge interval-dependent jitter, as well as a possible failure to recognise split muscle fibres. The mean MCD on axonal stimulation was only 5.2 microseconds less than in the voluntary activation study and was thus 8% more than theoretically expected for single motor end plates. The difference could be due to an axonal jitter and some other factors. Axonal stimulation has proved to be a relatively easy and reliable method for routine estimation of neuromuscular jitter, provided that the resolution of time measurement is better than 2 microseconds, so that low jitter due to occasional direct muscle fibre stimulation is not mistaken for a normal reading. The upper normal limits for the extensor digitorum communis muscle suggested by the present study are 40 microseconds (individual muscle fibres) and 25 microseconds (mean of 30 muscle fibres).
机译:这项单纤维EMG研究将一组正常受试者中自愿激活的肌肉中神经肌肉抖动的标准测量方法与肌肉内电刺激运动轴突的标准方法进行了比较。后一种方法避免了放电间隔相关的抖动,并避免了识别裂开的肌肉纤维的可能。轴突刺激的平均MCD仅比自愿激活研究少5.2微秒,因此比单马达端板的理论预期高8%。差异可能是由于轴突抖动和其他一些因素造成的。轴突刺激已被证明是常规评估神经肌肉抖动的一种相对简便可靠的方法,条件是时间测量的分辨率优于2微秒,因此偶尔的直接肌肉纤维刺激引起的低抖动不会被误认为是正常读数。 。本研究建议的指趾伸指肌的正常上限为40微秒(单个肌纤维)和25微秒(平均30根肌纤维)。

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