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首页> 外文期刊>The Journal of Experimental Biology >Grizzly bear (Ursus arctos horribilis) locomotion: forelimb joint mechanics across speed in the sagittal and frontal planes
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Grizzly bear (Ursus arctos horribilis) locomotion: forelimb joint mechanics across speed in the sagittal and frontal planes

机译:Grizzly Bear(Ursus Arctos Horribilis)Lofomootion:在矢状和额平面飞过速度的前肢联合力学

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The majority of terrestrial locomotion studies have focused on parasagittal motion and paid less attention to forces or movement in the frontal plane. Our previous research has shown that grizzly bears produce higher medial ground reaction forces (lateral pushing from the animal) than would be expected for an upright mammal, suggesting frontal plane movement may be an important aspect of their locomotion. To examine this, we conducted an inverse dynamics analysis in the sagittal and frontal planes, using ground reaction forces and position data from three high-speed cameras of four adult female grizzly bears. Over the speed range collected, the bears used walks, running walks and canters. The scapulohumeral joint, wrist and the limb overall absorb energy (average total net work of the forelimb joints, -0.97 W kg(-1)). The scapulohumeral joint, elbow and total net work of the forelimb joints have negative relationships with speed, resulting in more energy absorbed by the forelimb at higher speeds (running walks and canters). The net joint moment and power curves maintain similar patterns across speed as in previously studied species, suggesting grizzly bears maintain similar joint dynamics to other mammalian quadrupeds. There is no significant relationship with net work and speed at any joint in the frontal plane. The total net work of the forelimb joints in the frontal plane was not significantly different from zero, suggesting that, despite the high medial ground reaction forces, the forelimb acts as a strut in that plane.
机译:大多数陆地运动学研究都集中在防阳伞运动上,并在正面平面中的力量或运动不那么注意。我们以前的研究表明,灰熊产生更高的内侧地面反作用力(从动物的横向推动),而不是预期的直立哺乳动物,表明正面平面运动可能是其运动的重要方面。为了检查这一点,我们在矢状和前平面中进行了反向动力学分析,使用地面反作用力和来自四个成年女性灰熊的三个高速摄像头的位置数据。收集的速度范围,熊使用的熊走,跑步和颂歌。胶伞形状接头,手腕和肢体整体吸收能量(平均全面的前肢关节工作,-0.97W kg(-1))。外套关节的突厥骨关节,弯头和净净工作与速度产生负面关系,导致前肢吸收的更高速度(跑步和颂歌)。净联合时刻和功率曲线在以前研究的物种中保持速度的速度相似,旨在将灰熊与其他哺乳动物Quadrupeds保持相似的关节动力学。与额外平面中的任何关节的净工作和速度没有明显的关系。前平面中的前列腺关节的总净工作与零没有显着差异,表明,尽管内侧地面反作用力高,但前肢起到该平面中的支柱。

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