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首页> 外文期刊>The Journal of Experimental Biology >Function of the epaxial muscles during trotting
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Function of the epaxial muscles during trotting

机译:小跑过程中腓肠肌的功能

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In mammals, the epaxial muscles are believed to stabilize the trunk during walking and trotting because the timing of their activity is not appropriate to produce bending of the trunk. To test whether this is indeed the case, we recorded the activity of the m. multifidus lumborum and the m. longissimus thoracis et lumborum at three different sites along the trunk (T13, L3, L6) as we manipulated the moments acting on the trunk and the pelvis in dogs trotting on a treadmill. Confirming results of previous studies, both muscles exhibited a biphasic and bilateral activity. The higher burst was associated with the second half of ipsilateral hindlimb stance phase, the smaller burst occurred during the second half of ipsilateral hindlimb swing phase. The asymmetry was noticeably larger in the m. longissimus thoracis et lumborum than in the m. multifidus lumborum. Although our manipulations of the inertia of the trunk produced results that are consistent with previous studies indicating that the epaxial muscles stabilize the trunk against accelerations in the sagittal plane, the responses of the epaxial muscles to manipulations of trunk inertia were small compared with their responses when moments produced by the extrinsic muscles of the hindlimb were manipulated. Our results indicate that the multifidus and longissimus muscles primarily stabilize the pelvis against (1) vertical components of hindlimb retractor muscles and (2) horizontal components of the hindlimb protractor and retractor muscles. Consistent with this, stronger effects of the manipulations were observed in the posterior sampling sites.
机译:在哺乳动物中,据信外延肌在行走和小跑时可以稳定躯干,因为其活动时间不适合使躯干弯曲。为了测试是否确实如此,我们记录了m的活动。腰果杂种当我们操纵在跑步机上奔跑的狗的躯干和骨盆的瞬间时,沿着躯干的三个不同部位(T13,L3,L6)的腰长腿和腰部。先前研究的结果证实,两条肌肉均表现出双相和双相活动。较高的爆发与同侧后肢站立阶段的后半段相关,较小的爆发发生在同侧后肢摆动阶段的后半段。在m中,不对称性明显更大。腰部和腰部比中腰。腰fi。尽管我们对躯干惯性的操纵产生的结果与先前的研究一致,表明前臂肌肉使躯干抵抗矢状面中的加速度稳定,但与躯干惯性操纵相比,其对躯干惯性操纵的响应较小后肢的外在肌肉产生的瞬间被操纵了。我们的结果表明,多裂肌和最长肌可以使骨盆稳定,以抵御(1)后肢牵开器肌肉的垂直分量和(2)后肢牵开器和牵开器肌肉的水平分量。与此相一致,在后采样位置观察到了更强的操纵效果。

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