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猫后肢拮抗肌交叉神经支配后运动单位的生理和组织化学特性比较

Comparison of physiological and histochemical properties of motor units after cross-reinnervation of antagonistic muscles in the cat hindlimb.

作者信息

Gordon T, Thomas C K, Stein R B, Erdebil S

机构信息

Department of Physiology, University of Alberta, Edmonton, Canada.

出版信息

J Neurophysiol. 1988 Jul;60(1):365-78. doi: 10.1152/jn.1988.60.1.365.

Abstract
  1. Physiological and histochemical properties of the cat ankle extensor muscles, the lateral and medial gastrocnemius, and the soleus were studied after cross-reinnervation by flexor motoneurons. 2. Tibial and common peroneal nerves were cut and cross-united in the popliteal fossa of 2- to 6-mo-old cats. Eighteen to 24 mo later, single motor units were isolated by dissection and stimulation of ventral root filaments and classified into four types: fast-twitch, fatigable (FF), fast-twitch with intermediate fatigue resistance (FI), fast-twitch, fatigue-resistant (FR), and slow, fatigue-resistant (S). Muscle fibers were classified as fast glycolytic (FG), fast, oxidative glycolytic (FOG), and slow oxidative (SO) on the basis of histochemical staining. 3. Although motor-unit force was normally well correlated with the size of the innervating motor axon in the cross-reinnervated muscles, the force of different unit types overlapped considerably. The reinnervated motor units also showed a higher than normal degree of fatigability. 4. The range of muscle unit forces in cross-reinnervated triceps surae muscles was the same as in the normally innervated triceps surae muscles. This range is 2-3 times greater than the flexor muscles, which the common peroneal nerve normally supplies. The range of contraction speed of units in the cross-reinnervated extensor muscles was comparable to that in the flexor muscles, consistent with a motoneuron-specific determination of muscle speed (28). 5. SO and FOG muscle fibers were found in all reinnervated triceps surae muscles, but FG fibers were only found in reinnervated medial gastrocnemius (MG) and lateral gastrocnemius (LG) muscles, consistent with previous findings of the resistance of soleus muscles to complete conversion (10, 16, 20, 21). Type grouping of muscle fibers was characteristic of the reinnervated muscles. 6. Reinnervated SO muscle fibers were larger than the corresponding fibers in normally innervated muscles as were the estimated number of muscle fibers innervated by slow motor axons. Nonetheless, the force generated by the S motor units remained relatively smaller than FR and FF units. The relative contributions of the number, cross-sectional area and specific tension to the force generation of reinnervated motor units are discussed.
摘要
  1. 对猫的踝关节伸肌(外侧和内侧腓肠肌以及比目鱼肌)在由屈肌运动神经元进行交叉神经支配后,研究其生理和组织化学特性。2. 将2至6月龄猫的胫神经和腓总神经在腘窝处切断并交叉吻合。18至24个月后,通过解剖和刺激腹根细丝分离出单个运动单位,并分为四种类型:快肌纤维、易疲劳型(FF)、具有中等疲劳抗性的快肌纤维型(FI)、抗疲劳的快肌纤维型(FR)以及慢肌纤维、抗疲劳型(S)。根据组织化学染色将肌纤维分为快糖酵解型(FG)、快氧化糖酵解型(FOG)和慢氧化型(SO)。3. 尽管在交叉神经支配的肌肉中,运动单位的力量通常与支配运动轴突的大小密切相关,但不同单位类型的力量有相当大的重叠。重新神经支配的运动单位也表现出比正常更高的疲劳程度。4. 交叉神经支配的小腿三头肌中肌肉单位力量的范围与正常神经支配的小腿三头肌相同。这个范围比腓总神经正常支配的屈肌大2至3倍。交叉神经支配的伸肌中单位收缩速度的范围与屈肌中的相当,这与运动神经元对肌肉速度的特异性决定一致(28)。5. 在所有重新神经支配的小腿三头肌中都发现了SO和FOG肌纤维,但FG纤维仅在重新神经支配的内侧腓肠肌(MG)和外侧腓肠肌(LG)中发现,这与先前关于比目鱼肌抵抗完全转化的研究结果一致(10、16、20、21)。肌纤维的类型分组是重新神经支配肌肉的特征。6. 重新神经支配的SO肌纤维比正常神经支配肌肉中的相应纤维更大,由慢运动轴突支配的肌纤维估计数量也是如此。尽管如此,S运动单位产生的力量仍然相对小于FR和FF单位。讨论了重新神经支配的运动单位力量产生中数量、横截面积和比张力的相对贡献。

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