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在猫的腓肠肌内侧单个运动单位中研究代偿性肥大的作用。

Effect of compensatory hypertrophy studied in individual motor units in medial gastrocnemius muscle of the cat.

作者信息

Walsh J V, Burke R E, Rymer W Z, Tsairis P

出版信息

J Neurophysiol. 1978 Mar;41(2):496-508. doi: 10.1152/jn.1978.41.2.496.

Abstract
  1. Compensatory hypertrophy of the medial gastrocnemius (MG) muscle was produced by denervating or removing its synergists (i.e., the lateral gastrocnemius, soleus, and plantaris muscles) in adult cats. Following survival times of 14-32 wk, intracellular recording and stimulation techniques were used to study the motor-unit population in MG. The data obtained were compared with results from MG motor units in normal unoperated cats of the same body size and weight. 2. Using criteria employed for normal motor units, the units in hypertrophic MG muscles were readily classified into the same groups (types FF, F(int), FR, and S) as in normal MG. There was no detectable difference in the distribution of motor-unit types after hypertrophy. 3. When compared with a normal motor-unit sample, there was a large increase in mean tetanic tension, but no significant change in twitch tension, for each motor-unit type in the hypertrophied muscles. The most marked increase was found among the fatigue-resistant type S and type FR motor units. There was no alteration of twitch contraction times or fatigue resistance in any unit type after hypertrophy. 4. For each motor-unit type, the mean homonymous (MG) group Ia EPSP amplitude was the same in normal and hypertrophic MG populations. There was, however, a significant increase in the average conduction velocity of MG motor axons in the animals with uncomplicated MG synergist removal and maximal MG hypertrophy. 5. On the basis of histochemical staining, muscle fibers from comparable sections of hypertrophic and contralateral (unoperated) MG muscles were presumptively identified as belonging to FF, FR, or S units. There was no significant difference between hypertrophic and contralateral MG muscles in the percentage of each fiber type, although there was some variability in muscle composition from one cat to another. One muscle pair was studied in detail for fiber cross-sectional area. In this cat, with marked hypertrophy by muscle weight, there was a modest increase in the mean fiber areas of histochemical S and FR muscle fibers, but no evident change in FF fibers, on the hypertrophic side. 6. MG motor units were examined in several cats in which synergist removal resulted in scarring and marked limitation of passive ankle mobility, and no evident weight gain in MG. Motor units of all types in these animals showed a decrease in twitch tension and in mean twitch/tetanus ratios, with little alteration in mean tetanic tensions. 7. The main effect of compensatory hypertrophy under the present conditions was a large increase in tetanic tension output from individual motor units due, at least in part, to an increase in fiber cross-sectional area. There was no evidence indicating any "conversion" of motor units or of their muscle fibers from one type to another.
摘要
  1. 通过切除成年猫的内侧腓肠肌(MG)协同肌(即外侧腓肠肌、比目鱼肌和跖肌)或使其失神经支配,诱导MG肌肉发生代偿性肥大。在存活14 - 32周后,采用细胞内记录和刺激技术研究MG中的运动单位群体。将获得的数据与相同体型和体重的正常未手术猫的MG运动单位结果进行比较。2. 使用针对正常运动单位的标准,肥大MG肌肉中的单位很容易被归类为与正常MG相同的组(FF型、F(int)型、FR型和S型)。肥大后运动单位类型的分布没有可检测到的差异。3. 与正常运动单位样本相比,肥大肌肉中每种运动单位类型的强直张力平均值大幅增加,但抽搐张力没有显著变化。在抗疲劳的S型和FR型运动单位中发现增加最为明显。肥大后任何单位类型的抽搐收缩时间或抗疲劳能力均无改变。4. 对于每种运动单位类型,正常和肥大MG群体中平均同名(MG)Ia类兴奋性突触后电位(EPSP)幅度相同。然而,在单纯切除MG协同肌且MG肥大最大的动物中,MG运动轴突的平均传导速度显著增加。5. 根据组织化学染色,肥大MG肌肉和对侧(未手术)MG肌肉可比切片中的肌纤维被推定属于FF型、FR型或S型单位。尽管不同猫之间肌肉组成存在一些差异,但肥大和对侧MG肌肉中每种纤维类型的百分比没有显著差异。对一对肌肉的纤维横截面积进行了详细研究。在这只肌肉重量明显肥大的猫中,肥大侧组织化学S型和FR型肌纤维的平均纤维面积适度增加,但FF纤维没有明显变化。6. 在几只猫中检查了MG运动单位,这些猫切除协同肌后导致瘢痕形成和被动踝关节活动明显受限,且MG没有明显增重。这些动物中所有类型的运动单位抽搐张力和平均抽搐/强直比值均降低,强直张力平均值变化不大。7. 在当前条件下,代偿性肥大的主要影响是单个运动单位的强直张力输出大幅增加,至少部分原因是纤维横截面积增加。没有证据表明运动单位或其肌纤维从一种类型“转化”为另一种类型。

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