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Finite-element modelling reveals force modulation of jaw adductors in stag beetles

机译:有限元建模揭示了锹形甲虫下颌内收肌的力调节

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摘要

Male stag beetles carry large and heavy mandibles that arose through sexual selection over mating rights. Although the mandibles of Cyclommatus metallifer males are used in pugnacious fights, they are surprisingly slender. Our bite force measurements show a muscle force reduction of 18% for tip biting when compared with bites with the teeth located halfway along the mandibles. This suggests a behavioural adaptation to prevent failure. We confirmed this by constructing finite-element (FE) models that mimic both natural bite situations as well as the hypothetical situation of tip biting without muscle force modulation. These models, based on micro-CT images, investigate the material stresses in the mandibles for different combinations of bite location and muscle force. Young's modulus of the cuticle was experimentally determined to be 5.1 GPa with the double indentation method, and the model was validated by digital image correlation on living beetles. FE analysis proves to be a valuable tool in the investigation of the trade-offs of (animal) weapon morphology and usage. Furthermore, the demonstrated bite force modulation in male stag beetles suggests the presence of mechanosensors inside the armature.
机译:雄鹿甲虫携带着沉重的下颌骨,这些下颌骨是通过对交配权的性选择而产生的。尽管Cyclommatus metallifer雄性的下颌骨用于战斗中,但它们却很纤细。我们的咬合力测量结果显示,与牙齿位于下颌骨中间的咬合相比,尖端咬合的肌肉力量降低了18%。这表明行为适应可以防止失败。我们通过构建有限元(FE)模型来证实这一点,该模型可以模拟自然咬伤情况以及无肌肉力调节的尖端咬伤的假设情况。这些模型基于微型CT图像,针对咬合位置和肌肉力量的不同组合研究下颌骨中的物质应力。通过双压痕法实验确定了角质层的杨氏模量为5.1 GPa,并通过在活甲虫上的数字图像相关性验证了该模型。有限元分析被证明是(动物)武器形态和使用之间折衷研究的有价值的工具。此外,雄性甲虫的咬合力调制表明电枢内部存在机械传感器。

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