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首页> 外文期刊>The Journal of Experimental Biology >Effects of mass distribution on the mechanics of level trotting in dogs
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Effects of mass distribution on the mechanics of level trotting in dogs

机译:质量分布对狗水平小跑力学的影响

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The antero-posterior mass distribution of quadrupeds varies substantially amongst species, yet the functional implications of this design characteristic remain poorly understood. During trotting, the forelimb exerts a net braking force while the hindlimb exerts a net propulsive force. Steady speed locomotion requires that braking and propulsion of the stance limbs be equal in magnitude. We predicted that changes in body mass distribution would alter individual limb braking-propulsive force patterns and we tested this hypothesis by adding 10% body mass near the center of mass, at the pectoral girdle, or at the pelvic girdle of trotting dogs. Two force platforms in series recorded fore- and hindlimb ground reaction forces independently. Vertical and fore-aft impulses were calculated by integrating individual force-time curves and Fourier analysis was used to quantify the braking-propulsive (b-p) bias of the fore-aft force curve. We predicted that experimental manipulation of anteroposterior mass distribution would (1) change the forehind distribution of vertical impulse when the limb girdles are loaded, (2) decrease the b-p bias of the experimentally loaded limb and (3) increase relative contact time of the experimentally loaded limb, while (4) the individual limb mean fore-aft forces (normalized to body weight + added weight) would be unaffected. All four of these results were observed when mass was added at the pelvic girdle, but only 1, 3 and 4 were observed when mass was added at the pectoral girdle. We propose that the observed relationship between antero-posterior mass distribution and individual limb function may be broadly applicable to quadrupeds with different body types. In addition to the predicted results, our data show that the mechanical effects of adding mass to the trunk are much more complex than would be predicted from mass distribution alone. Effects of trunk moments due to loading were evident when mass was added at the center of mass or at the pelvic girdle. These results suggest a functional link between appendicular and axial mechanics via action of the limbs as levers.
机译:四足动物的前后质量分布在各物种之间有很大的不同,但是对这种设计特征的功能含义仍然知之甚少。在小跑过程中,前肢施加净制动力,而后肢施加净推进力。稳定的速度运动要求姿态肢体的制动和推进在大小上相等。我们预测身体质量分布的变化将改变各个肢体的制动推进力模式,我们通过在质心附近,胸带或小跑狗的骨盆带处增加10%的体重来检验这一假设。串联的两个测力平台分别记录了前肢和后肢的地面反作用力。通过整合各个力-时间曲线来计算垂直和前后脉冲,并使用傅立叶分析来量化前后力曲线的制动-推进(b-p)偏差。我们预测实验性前后质量分布的操作将(1)加载肢带时改变垂直冲动的前突分布,(2)降低试验加载的肢体的bp偏斜,(3)增加实验加载的相对接触时间(4)每个肢体的平均前后力(标准化为体重+体重增加)将不受影响。当在骨盆带处增加质量时,观察到所有这四个结果,但是在胸带处增加质量时,仅观察到了1、3和4。我们建议观察到的前后质量分布与单个肢体功能之间的关系可能广泛适用于具有不同体型的四足动物。除了预测的结果外,我们的数据还表明,向主干添加质量的机械效果比仅从质量分布中预测的复杂得多。当在重心或骨盆带处增加重物时,躯干力矩的影响很明显。这些结果表明通过肢体的杠杆作用,阑尾和轴向力学之间存在功能联系。

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