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人类单个趾短伸肌运动单位的轴突传导速度和随意放电特性

Axonal conduction velocity and voluntary discharge properties of individual short toe extensor motor units in man.

作者信息

Borg J, Grimby L, Hannerz J

出版信息

J Physiol. 1978 Apr;277:143-52. doi: 10.1113/jphysiol.1978.sp012266.

Abstract
  1. The axonal conduction velocity and the voluntary discharge properties of 120 short toe extensor motor units were studied in man. 2. Electromyographic techniques were used which permitted the identification of individual motor unit potentials after proximal and distal electrical nerve stimulation and during maximum voluntary effort. 3. The necessary selectivity of the e.m.g. recordings was achieved in two circumstances. In some subjects, previous motor nerve lesions distal to the point of stimulation had led to collateral sprouting with larger motor unit potentials. In other subjects an accessory deep peroneal nerve was present, so that lidocaine block of the main motor nerve left a small number of innervated motor units. 4. The axonal conduction velocities of the individual motor units ranged from 30 to 54 m/sec with most motor units between 35 and 45 m/sec. 5. Motor units which voluntarily could be driven continuously at frequencies below 10/sec had axonal conduction velocities between 30 and 45 m/sec. 6. Motor units which on voluntary drive responded only in high frequency bursts had axonal conduction velocities between 40 and 54 m/sec. 7. Motor units with intermediate voluntary discharge properties had intermediate axonal conduction velocities. 8. Thus a relationship was established between voluntary discharge properties and axonal conduction velocity.
摘要
  1. 对人体120个趾短伸肌运动单位的轴突传导速度和随意放电特性进行了研究。2. 采用肌电图技术,在近端和远端电刺激神经以及最大随意用力时,能够识别单个运动单位电位。3. 在两种情况下实现了肌电图记录所需的选择性。在一些受试者中,刺激点远端先前的运动神经损伤导致侧支发芽,运动单位电位增大。在其他受试者中,存在一条副腓深神经,因此利多卡因阻断主要运动神经后,仍有少量受神经支配的运动单位。4. 单个运动单位的轴突传导速度在30至54米/秒之间,大多数运动单位在35至45米/秒之间。5. 在低于10次/秒的频率下能够被连续随意驱动的运动单位,其轴突传导速度在30至45米/秒之间。6. 在随意驱动时仅以高频爆发形式做出反应的运动单位,其轴突传导速度在40至54米/秒之间。7. 具有中等随意放电特性的运动单位,其轴突传导速度也处于中等水平。8. 因此,在随意放电特性和轴突传导速度之间建立了一种关系。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d814/1282383/a28eb811cac5/jphysiol00771-0161-a.jpg

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