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Microstructure and Cross-Sectional Shape of Limb Bones in Great Horned Owls and Red-Tailed Hawks: How Do These Features Relate to Differences in Flight and Hunting Behavior?

机译:大角O和红尾鹰的四肢骨骼的微观结构和截面形状:这些特征与飞行和狩猎行为的差异有何关系?

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摘要

The Red-tailed Hawk and Great Horned Owl are two species of raptor that are similar in body size, diet, and habitat. Both species use their hindlimbs during hunting, but differ in foot morphology, how they approach and immobilize prey, and the average size of prey captured. They also differ in primary flight style: the Red-tailed Hawk uses static soaring and the Great Horned Owl uses flap-gliding. The objectives of this study were to characterize the microstructure and cross-sectional shape of limb bones of these species and examine the relationship with flight and hunting behaviors. The mid-shaft of six limb bones from six individuals of each species was sampled. The degree of bone laminarity (proportion of circular primary vascular canals) and cross-sectional geometric parameters were calculated. In both species, the humerus and femur exhibited features that suggest high resistance to torsional loading, whereas the tibiotarsus and phalanges had a shape more likely to resist compression and bending in a specific plane. The femur of the Red-tailed Hawk exhibited higher laminarity and larger polar moment of area than that of the Great Horned Owl. The tibiotarsus was more elliptical than that of the Great Horned Owl. The hawk approaches prey from a more horizontal axis, takes prey of greater mass, and is more likely to pursue prey on the ground, which could potentially be causing more torsional loads on the femur and bending loads on the tibiotarsus. In addition, differences in polar moment of area of the phalanges between the species could relate to differences in foot morphology or digit length. The humerus and ulna of the flap-gliding Great Horned Owl are more elliptical than the static soaring Red-tailed Hawk, a shape that may better resist the bending loads associated with a larger amount of flapping.
机译:红尾鹰和大角O是两种猛禽,它们的体型,饮食和栖息地都相似。两种物种在狩猎时都使用后肢,但脚的形态,如何接近和固定猎物以及捕获的猎物的平均大小不同。它们在主要飞行方式上也有所不同:红尾鹰使用静态高飞,大角O使用襟翼滑行。这项研究的目的是表征这些物种的四肢骨骼的微观结构和横截面形状,并研究其与飞行和狩猎行为的关系。从每个物种的六个个体的六个肢体骨骼的中间轴中取样。计算骨层度(圆形初级血管的比例)和横截面几何参数。在这两个物种中,肱骨和股骨均表现出对扭转载荷的高抵抗力,而胫骨和趾骨的形状更可能抵抗在特定平面上的压缩和弯曲。与大角O相比,红尾鹰的股骨表现出更高的层状性和更大的极地矩。胫骨比大角O的椭圆形更椭圆。鹰从更水平的轴接近猎物,捕获更大质量的猎物,并且更有可能在地面上追捕猎物,这有可能在股骨上产生更多的扭转载荷,并在胫骨上造成弯曲载荷。另外,物种之间的指骨区域的极矩的差异可能与足部形态或指长的差异有关。襟翼滑行的大角O的肱骨和尺骨比静态高耸的红尾鹰更呈椭圆形,这种形状可以更好地抵抗与较大拍动相关的弯曲载荷。

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  • 年(卷),期 -1(9),8
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  • 总页数 13
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