Celichowski J, Drzymała H
Department of Neurobiology, University School of Physical Education in Poznań, Poland.
J Physiol Pharmacol. 2006 Mar;57(1):83-93.
Differences between motor units in hindlimb locomotor muscles of male and female Wistar rats were studied. The contractile and action potential properties of various types of motor units as well as proportions of these units in the medial gastrocnemius muscle were analyzed. Experiments were based on functional isolation and electrical stimulation of axons of single motor units. Composition of motor units was different for male and female subjects, with higher number of the fast fatigable and lower number of slow type units in male animals. The contraction and the half-relaxation times were significantly longer in male motor units, what might be due to differences in muscle size. Slower contraction of male motor units likely corresponds to lower firing rates of their motoneurons. On the other hand, no significant differences between sexes were observed with respect to force parameters of motor units (the twitch and the maximum tetanus forces), except the fast resistant units (higher force values in male muscles). The mass of the muscle was approximately 1.5 time bigger in male rats. However, the mean ratio of motor unit tetanus force to the muscle mass was almost twice smaller in this group, what indirectly suggests that muscles of male rats are composed of higher number of motor units. Finally, female muscles appeared to have higher fatigue resistance as the effect of higher proportion of resistant units (slow and fast resistant) and higher values of the fatigue index in respective motor unit types. The motor unit action potentials in female rats had slightly lower amplitudes and shorter time parameters although this difference was significant only for fast resistant units.
研究了雄性和雌性Wistar大鼠后肢运动肌肉中运动单位的差异。分析了各种类型运动单位的收缩和动作电位特性,以及这些单位在内侧腓肠肌中的比例。实验基于单个运动单位轴突的功能分离和电刺激。雄性和雌性受试者的运动单位组成不同,雄性动物中快速疲劳型运动单位数量较多,慢型运动单位数量较少。雄性运动单位的收缩和半松弛时间明显更长,这可能是由于肌肉大小的差异。雄性运动单位收缩较慢可能与其运动神经元较低的放电频率相对应。另一方面,除了快速抗疲劳单位(雄性肌肉中的力量值较高)外,在运动单位的力量参数(单收缩和最大强直收缩力)方面未观察到性别之间的显著差异。雄性大鼠的肌肉质量大约是雌性的1.5倍。然而,该组中运动单位强直收缩力与肌肉质量的平均比值几乎小了一半,这间接表明雄性大鼠的肌肉由更多数量的运动单位组成。最后,由于抗疲劳单位(慢抗疲劳和快抗疲劳)比例较高以及各运动单位类型的疲劳指数值较高,雌性肌肉似乎具有更高的抗疲劳能力。雌性大鼠的运动单位动作电位幅度略低,时间参数较短,尽管这种差异仅在快速抗疲劳单位中显著。