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脊髓损伤后大鼠内侧腓肠肌运动单位特性的时程变化。Ⅱ. 脊髓半切的影响。

Time-related changes of motor unit properties in the rat medial gastrocnemius muscle after the spinal cord injury. II. Effects of a spinal cord hemisection.

机构信息

Department of Neurobiology, University School of Physical Education, Poznań, Poland.

出版信息

J Electromyogr Kinesiol. 2010 Jun;20(3):532-41. doi: 10.1016/j.jelekin.2009.07.003. Epub 2009 Aug 12.

Abstract

The contractile properties of motor units (MUs) were investigated in the medial gastrocnemius (MG) muscle in rats after the spinal cord hemisection at a low thoracic level. Hemisected animals were divided into 4 groups: 14, 30, 90 and 180 days after injury. Intact rats formed a control group. The mass of the MG muscle did not change significantly after spinal cord hemisection, hind limb locomotor pattern was almost unchanged starting from two weeks after injury, but contractile properties of MUs were however altered. Contraction time (CT) and half-relaxation time (HRT) of MUs were prolonged in all investigated groups of hemisected rats. The twitch-to-tetanus ratio (Tw/Tet) of fast MUs after the spinal cord hemisection increased. For slow MUs Tw/Tet values did not change in the early stage after the injury, but significantly decreased in rats 90 and 180 days after hemisection. As a result of hemisection the fatigue resistance especially of slow and fast resistant MU types was reduced, as well as fatigue index (Fat I) calculated for the whole examined population of MUs decreased progressively with the time. After spinal cord hemisection a reduced number of fast MUs presented the sag at frequencies 30 and 40 Hz, however more of them revealed sag in 20 Hz tetanus in comparison to control group. Due to considerable changes in twitch contraction time and disappearance of sag effect in unfused tetani of some MUs in hemisected animals, the classification of MUs in all groups of rats was based on the 20 Hz tetanus index (20 Hz Tet I) but not on the standard criteria usually applied for MUs classification. MU type differentiations demonstrated some clear changes in MG muscle composition in hemisected animals consisting of an increase in the proportion of slow MUs (likely due to an increased participation of the studied muscle in tonic antigravity activity) together with an increase in the percentage of fast fatigable MUs.

摘要

研究人员在脊髓低位横切后,对大鼠内侧腓肠肌(MG)中的运动单位(MU)的收缩特性进行了研究。横切动物被分为 4 组:损伤后 14、30、90 和 180 天。完整的大鼠形成对照组。脊髓横切后,MG 肌肉的质量没有明显变化,从损伤后两周开始,后肢运动模式几乎没有变化,但 MU 的收缩特性发生了改变。在所有研究的横切大鼠组中,MU 的收缩时间(CT)和半松弛时间(HRT)均延长。脊髓横切后,快 MU 的单次收缩至强直收缩比(Tw/Tet)增加。对于慢 MU,损伤后早期 Tw/Tet 值没有变化,但在横切后 90 和 180 天的大鼠中显著降低。由于横切,慢和快阻力 MU 类型的疲劳抗性降低,以及为整个检查的 MU 群体计算的疲劳指数(Fat I)随时间逐渐降低。脊髓横切后,较少数量的快 MU 在 30 和 40 Hz 频率下出现下降,但与对照组相比,在 20 Hz 强直收缩中有更多的快 MU 出现下降。由于一些 MU 的单次收缩收缩时间发生了相当大的变化,以及在未融合的强直收缩中消失了下降效应,因此在所有横切大鼠组中,MU 的分类基于 20 Hz 强直收缩指数(20 Hz Tet I),而不是通常用于 MU 分类的标准标准。MU 类型分化显示,横切动物的 MG 肌肉组成发生了一些明显的变化,包括慢 MU 的比例增加(可能是由于研究肌肉在紧张性抗重力活动中的参与增加),以及快易疲劳 MU 的百分比增加。

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