Variations in humeral and femoral strains across body sizes and limb posture in American alligators.

IF 2.8 2区 生物学 Q2 BIOLOGY Journal of Experimental Biology Pub Date : 2024-12-15 Epub Date: 2024-12-23 DOI:10.1242/jeb.249211
Masaya Iijima, V David Munteanu, Richard W Blob
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Abstract

Bone loading is a crucial factor that constrains locomotor capacities of terrestrial tetrapods. To date, limb bone strains and stresses have been studied across various animals, with a primary emphasis on consistent bone loading in mammals of different sizes and variations in loading regimes across different clades and limb postures. However, the relationships between body size, limb posture and limb bone loading remain unclear in animals with non-parasagittally moving limbs, limiting our understanding of the evolution of limb functions in tetrapods. To address this, we investigated in vivo strains of the humerus and femur in juvenile to subadult American alligators as they walked with various limb postures. We found that principal strains on the ventromedial cortex of the femoral midshaft increased with larger sizes among the three individuals displaying similar limb postures. This indicates that larger individuals experience greater limb bone strains when maintaining similar limb postures to smaller individuals. Axial and shear strains in the humerus were generally reduced with a more erect limb posture, while trends in the femur varied among individuals. Given that larger alligators have been shown to adopt a more erect limb posture, the transition from sprawling to erect limb posture, particularly in the forelimb, might be linked to the evolution of larger body sizes in archosaurs, potentially as a means to mitigate limb bone loading. Moreover, both the humerus and femur experienced decreased shear loads compared with axial loads with a more erect limb posture, suggesting proportional changes in bone loading regimes throughout the evolution of limb posture.

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美洲短吻鳄的肱骨和股骨张力在身体大小和肢体姿势上的变化。
骨负荷是制约陆生四足动物运动能力的重要因素。迄今为止,已经对各种动物的肢体骨应变和应力进行了研究,主要侧重于不同体型的哺乳动物的一致骨负荷以及不同进化枝和肢体姿势的负荷制度的变化。然而,在非副手指运动肢体的动物中,体型、肢体姿势和肢体骨负荷之间的关系尚不清楚,这限制了我们对四足动物肢体功能进化的理解。为了解决这个问题,我们研究了幼年到亚成年美洲短吻鳄在不同肢体姿势下行走时的肱骨和股骨的体内应变。我们发现,在四肢姿势相似的三个个体中,股骨中轴腹内侧皮质的主应变随着体型的增大而增加。这表明,体型较大的个体在保持与体型较小的个体相似的肢体姿势时,会经历更大的肢体骨张力。肱骨的轴向和剪切应变通常随着肢体姿势的直立而减少,而股骨的趋势因个体而异。考虑到体型较大的短吻鳄已经被证明会采取更直立的肢体姿势,从四肢伸展到直立肢体姿势的转变,特别是在前肢,可能与祖龙体型更大的进化有关,这可能是减轻肢体骨骼负荷的一种手段。此外,与更直立的肢体姿势时的轴向载荷相比,肱骨和股骨都经历了更少的剪切载荷,这表明在肢体姿势的进化过程中,骨载荷机制的比例变化。
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来源期刊
CiteScore
5.50
自引率
10.70%
发文量
494
审稿时长
1 months
期刊介绍: Journal of Experimental Biology is the leading primary research journal in comparative physiology and publishes papers on the form and function of living organisms at all levels of biological organisation, from the molecular and subcellular to the integrated whole animal.
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