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大斑啄木鸟与云雀颅骨和鸟喙骨的机械性能、微观结构和成分的比较研究。

Comparative study of the mechanical properties, micro-structure, and composition of the cranial and beak bones of the great spotted woodpecker and the lark bird.

机构信息

Key Laboratory for Biomechanics and Mechanobiology of Ministry of Education, School of Biological Science and Medical Engineering, Beihang University, Beijing 100191, China.

出版信息

Sci China Life Sci. 2011 Nov;54(11):1036-41. doi: 10.1007/s11427-011-4242-2. Epub 2011 Dec 16.

Abstract

Woodpeckers are well able to resist head injury during repeated high speed impacts at 6-7 m s⁻¹ with decelerations up to 1000 g. This study was designed to compare the mechanical properties, microstructures and compositions of cranial bone and beak bone of great spotted woodpecker (Dendrocopos major) and the Mongolian sky lark (Melanocorypha mongolica). Microstructures were observed using micro-computed tomography and scanning electron microscopy and their compositions were characterized by X-ray powder diffraction and Fourier-transform infrared spectroscopy. Under high stress, the cranial bone and the beak of the woodpecker exhibited distinctive mechanical features, which were associated with differences in micro-structure and composition, compared with those of the lark. Evolutionary optimization of bone micro-structure has enabled functional adaptation to the woodpecker's specific lifestyle. Its characteristic micro-structure efficiently avoids head impact injury and may provide potential clues to the prevention of brain injury using bio-inspired designs of shock-absorbing materials.

摘要

啄木鸟在以 6-7 m s⁻¹ 的速度重复高速撞击时,能够很好地抵抗头部受伤,减速度高达 1000 g。本研究旨在比较大斑啄木鸟(Dendrocopos major)和蒙古百灵(Melanocorypha mongolica)的颅骨和鸟喙骨的力学性能、微观结构和成分。使用微计算机断层扫描和扫描电子显微镜观察微观结构,并用 X 射线粉末衍射和傅里叶变换红外光谱对其成分进行了表征。在高应力下,与百灵的颅骨和鸟喙相比,啄木鸟的颅骨和鸟喙表现出独特的力学特征,这与其微观结构和成分的差异有关。骨骼微观结构的进化优化使其能够适应啄木鸟特定的生活方式。其特征性的微观结构有效地避免了头部撞击损伤,并且可能为使用基于仿生学的减震材料预防脑损伤提供潜在的线索。

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