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A comparative analysis of the avian skull: Woodpeckers and chickens

机译:禽颅骨的比较分析:啄木鸟和鸡

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Woodpeckers peck at trees without any reported brain injury despite undergoing high impact loads. Amongst the adaptations allowing this is a highly functionalized impact-absorption system consisting of the head, beak, tongue and hyoid bone. This study aims to examine the anatomical structure, composition, and mechanical properties of the skull to determine its potential role in energy absorption and dissipation. An acorn woodpecker and a domestic chicken are compared through micro-computed tomography to analyze and compare two- and three-dimensional bone morphometry. Optical and scanning electron microscopy with energy dispersive X-ray spectroscopy are used to identify the structural and chemical components. Nanoindentation reveals mechanical properties along the transverse cross-section, normal to the direction of impact. Results show two different strategies: the skull bone of the woodpecker shows a relatively small but uniform level of closed porosity, a higher degree of mineralization, and a higher cortical to skull bone ratio. Conversely, the chicken skull bone shows a wide range of both open and closed porosity (volume fraction), a lower degree of mineralization, and a lower cortical to skull bone ratio. This structural difference affects the mechanical properties: the skull bones of woodpeckers are slightly stiffer than those of chickens. Furthermore, the Young's modulus of the woodpecker frontal bone is significantly higher than that of the parietal bone. These new findings may be useful to potential engineered design applications, as well as future work to understand how woodpeckers avoid brain injury.
机译:尽管经历了高冲击载荷,但啄木鸟在没有任何报告的脑损伤的情况下啄食树木。在适应方面,允许这是一个高度官能化的冲击吸收系统,由头部,喙,舌和舌骨骨组成。本研究旨在检查颅骨的解剖结构,组合物和机械性能,以确定其在能量吸收和耗散方面的潜在作用。通过微计算机断层扫描来进行橡子啄木鸟和国内鸡,以分析和比较两维和三维骨形态学。具有能量分散X射线光谱的光学和扫描电子显微镜用于识别结构和化学成分。纳米indentation沿着横截面透露机械性能,正常到撞击方向。结果显示出两种不同的策略:啄木鸟的头骨骨骼显示出相对较小但均匀的闭合孔隙度,更高程度的矿化程度,以及颅骨骨比的更高的皮质。相反,鸡肉头骨骨显示出宽范围的开口和闭孔(体积分数),较低程度的矿化和颅骨骨比的较低皮质。这种结构差异影响了机械性能:啄木鸟的头骨骨骼比鸡的骨头略微致密。此外,啄木鸟前骨的杨氏模量显着高于顶骨的模量。这些新发现可能对潜在的工程设计应用以及未来的工作,以了解啄木鸟如何避免脑损伤。

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