García A, Calleja J, Antolín F M, Berciano J
Service of Clinical Neurophysiology, University Hospital 'Marqués de Valdecilla', E-39008, Santander, Spain.
Clin Neurophysiol. 2000 Mar;111(3):513-20. doi: 10.1016/s1388-2457(99)00279-5.
There are few data on electrophysiological data of motor and sensory fibres during nerve maturation. The aim of this study is to investigate the evolution of nerve conduction in the upper and lower limbs during the first years of life.
The study comprised 92 normal infants and children aged from 1 week to 6 years. Using surface electrodes, the investigation included the following data: (1) motor conduction velocity (MCV), corrected distal motor latency (DML) to a standard distance, and F-waves of the median, ulnar, peroneal and tibial nerves; (2) sensory conduction velocity (SCV) of the median and tibial nerves; and (3) amplitude and morphology of the muscle and sensory action potentials.
Maximal MCV and SCV in the neonatal period was about half of adults; there was a steep conduction increase during the first year of life, adult values being reached around age 4. In the neonatal period corrected DML was greater than in adults with a further decrease during the first year. F-wave latencies also decreased during the first year with increase at the end of the study.
This study corroborates the fact that 'maturation' of MCV and SCV occurs during the first 5 years of life, especially in the former. Evolution of DML is accounted for using correction. F-wave latency changes are explained both by an increase in MCV, and extremity growth.
关于神经成熟过程中运动和感觉纤维的电生理数据较少。本研究的目的是调查生命最初几年中上下肢神经传导的演变。
该研究包括92名年龄在1周龄至6岁的正常婴儿和儿童。使用表面电极,调查包括以下数据:(1)正中神经、尺神经、腓总神经和胫神经的运动传导速度(MCV)、校正至标准距离的远端运动潜伏期(DML)和F波;(2)正中神经和胫神经的感觉传导速度(SCV);以及(3)肌肉和感觉动作电位的幅度和形态。
新生儿期的最大MCV和SCV约为成人的一半;在生命的第一年传导急剧增加,约在4岁时达到成人值。在新生儿期校正后的DML大于成人,在第一年中进一步下降。F波潜伏期在第一年也下降,在研究结束时增加。
本研究证实了MCV和SCV在生命的前5年中发生“成熟”这一事实,尤其是在前者中。DML的演变通过校正来解释。F波潜伏期的变化由MCV增加和肢体生长共同解释。