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下肢肌电图对姿势扰动反应的成熟:反应潜伏期与最快中枢和外周传出神经发育的关系。

Maturation of lower extremity EMG responses to postural perturbations: relationship of response-latencies to development of fastest central and peripheral efferents.

作者信息

Müller K, Hömberg V, Coppenrath P, Lenard H G

机构信息

Department of Pediatrics, Heinrich-Heine-University, Düsseldorf, Federal Republic of Germany.

出版信息

Exp Brain Res. 1991;84(2):444-52. doi: 10.1007/BF00231468.

DOI:10.1007/BF00231468
PMID:2065752
Abstract

EMG responses to toe-up tilt perturbations on a movable platform system were analysed in 86 children between the age of 12 months and 13 years. To assess the relative contribution of peripheral and central nerve conduction properties, a concomitant recording of the fastest efferent pathways in the central and peripheral motor system was made using non-invasive transcranial magnetic stimulation of motor cortex and peripheral nerve roots. This allowed the determination of the fastest downstream efferent connection times from motor cortex to lumbar motor neuron pools and to measure the fastest efferent conduction from these motor neuron pools to effector muscles in the lower leg. The sequence observed for stance stabilizing EMG responses was similar to that obtained in earlier studies with short latency (SL) and middle latency (ML) companents occurring in the stretched triceps surae muscle and long latency (LL) responses occurring in the non-stretched tibialis anterior muscle. Homologous responses were also obtained in upper leg muscles, being recruited consistently later than those in lower leg muscles across all age groups. In the short latency range two different SL1- and SL2-responses were obtained in children of all age groups as well as in adult controls. Both the SL1- and the SL2-responses showed a flat developmental profile, reaching adult values between 20 and 30 months of age which correlated with that of the fastest efferents from lumbar motor neuron pools to leg muscles, i.e. the final motor path. ML-responses showed a steeper developmental profile.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

对86名年龄在12个月至13岁之间的儿童,分析了其在可移动平台系统上对足背屈倾斜扰动的肌电图(EMG)反应。为评估外周和中枢神经传导特性的相对贡献,通过对运动皮层和外周神经根进行无创经颅磁刺激,同步记录中枢和外周运动系统中最快的传出通路。这使得能够确定从运动皮层到腰运动神经元池的最快下游传出连接时间,并测量从这些运动神经元池到小腿效应肌的最快传出传导。观察到的姿势稳定EMG反应序列与早期研究中获得的序列相似,即潜伏期短(SL)和中期潜伏期(ML)成分出现在伸展的小腿三头肌中,而潜伏期长(LL)反应出现在未伸展的胫骨前肌中。在大腿肌肉中也获得了同源反应,在所有年龄组中,其募集时间始终比小腿肌肉中的反应晚。在短潜伏期范围内,所有年龄组的儿童以及成年对照组均出现了两种不同的SL1和SL2反应。SL1和SL2反应均呈现平稳的发育曲线,在20至30个月大时达到成人水平,这与从腰运动神经元池到腿部肌肉的最快传出通路(即最终运动路径)的发育曲线相关。ML反应呈现出更陡峭的发育曲线。(摘要截短至250字)

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本文引用的文献

1
CONDUCTION VELOCITY OF MOTOR NERVES IN INFANTS AND CHILDREN.婴幼儿运动神经的传导速度
Pediatrics. 1964 Nov;34:708-27.
2
NORMAL CONDUCTION VELOCITY OF ULNAR, MEDIAN AND PERONEAL NERVES IN INFANCY, CHILDHOOD AND ADOLESCENCE.婴儿期、儿童期及青春期尺神经、正中神经和腓总神经的正常传导速度
Acta Paediatr Suppl (Upps). 1963:SUPPL146:68-76. doi: 10.1111/j.1651-2227.1963.tb05519.x.
3
Ulnar nerve conduction velocity and H-reflex in infants and children.婴幼儿及儿童的尺神经传导速度和H反射
J Appl Physiol. 1960 Jan;15:1-9. doi: 10.1152/jappl.1960.15.1.1.
4
The influence of prior instruction to the subject on an apparently involuntary neuro-muscular response.对受试者的预先指导对一种明显的非自主神经肌肉反应的影响。
J Physiol. 1956 Apr 27;132(1):17-8P.
5
Stimulation of the cerebral cortex in the intact human subject.对完整人类受试者大脑皮层的刺激。
Nature. 1980 May 22;285(5762):227. doi: 10.1038/285227a0.
6
Response to sudden torques about ankle in man. II. Postmyotatic reactions.人体踝关节对突然扭矩的反应。II. 肌张反射后反应。
J Neurophysiol. 1980 Jan;43(1):86-101. doi: 10.1152/jn.1980.43.1.86.
7
Stiffness regulation provided by short-latency reflexes in human triceps surae muscles.人类小腿三头肌中短潜伏期反射所提供的刚度调节。
Brain Res. 1982 Feb 18;234(1):159-64. doi: 10.1016/0006-8993(82)90481-4.
8
Long latency reflex force of human finger muscles in response to imposed sinusoidal movements.人类手指肌肉对施加的正弦运动的长潜伏期反射力。
Exp Brain Res. 1984;55(2):317-24. doi: 10.1007/BF00237282.
9
Variability of postural "reflexes" in humans.人类姿势“反射”的变异性。
Exp Brain Res. 1983;52(3):423-8. doi: 10.1007/BF00238035.
10
The corticomotoneurone connection is normal in Parkinson's disease.
Nature. 1984;310(5976):407-9. doi: 10.1038/310407a0.