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Ultrastructural changes of the peripheral nerve induced by vibration: an experimental study.

机译:振动引起的周围神经的超微结构变化:一项实验研究。

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摘要

To investigate the effects of vibration on the peripheral nerves, rabbits were exposed to vibration of 60 cycles/s frequency with 0.35 mm amplitude (acceleration: 51 m/s2) for two hours daily. After 150, 250, 450, and 600 hours vibration, thin sections of the saphenous and median nerves were examined under the electron microscope. Vibration was found to induce the following changes: (1) disruption of the myelin sheath and constriction of the axon, (2) accumulation of vacuoles in the nodal gap and paranodal region, (3) disorganisation of the paranodal end loops and detachment of the paranodal end loops from the axolemma, (4) dilatation of the Schmidt-Lanterman incisures (SLI) and increased density of SLI, and (5) disappearance of neurotubules and neurofilaments in axons. The diameters of myelin sheaths disrupted by vibration varied from 2 to 12 microns. The extent of the myelin disruption is proportional to the vibration dose.
机译:为了研究振动对周围神经的影响,每天将兔子暴露于60个周期/秒频率,振幅为0.35 mm(加速度:51 m / s2)的振动下,持续两个小时。振动150、250、450和600小时后,在电子显微镜下检查了隐神经和正中神经的薄片。发现振动会引起以下变化:(1)髓鞘的破坏和轴突的收缩;(2)结节间隙和副结区域的液泡积聚;(3)副结末端环的混乱和结节的脱离。腋窝旁有一个淋巴结末端环,(4)Schmidt-Lanterman切口(SLI)扩张和SLI密度增加,以及(5)轴突中神经管和神经丝的消失。被振动破坏的髓鞘的直径在2至12微米之间变化。髓磷脂破坏的程度与振动剂量成正比。

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