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首页> 外文期刊>Invertebrate biology >A new use for synchrotron X-ray microtomography:three-dimensional biomechanical modeling of chelicerate mouthparts and calculation of theoretical bite forces
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A new use for synchrotron X-ray microtomography:three-dimensional biomechanical modeling of chelicerate mouthparts and calculation of theoretical bite forces

机译:同步加速器X射线断层摄影术的新用途:螯状口器的三维生物力学建模和理论咬合力的计算

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We present the first report on the use of the non-invasive method of synchrotron X-ray microtomography to model the dynamics and theoretical bite forces of arthropod mouthparts. The nature of the data allowed us to include precise measurements of muscle areas and the spatial geometry of muscle origins and insertions into a biomechanical model of a morphological microstructure. We investigated the functional morphology of the chelicera in the oribatid mite Archegozetes longisetosus (Acari, Oribatida), a model organism for Chelicerata. The chelicera represents a first-class lever; the intrinsic muscular system consists of a feather-shaped depressor with six muscle bundles and a bouquet-shaped levator with 16 bundles. The relative bite forces, as compared with body mass (force/mass~(2/3)), are 390Nkg~(-1)and lie within those known for vertebrates (≤260Nkg~(-1)) and decapod chelae (≤915Nkg~(-1)). The dynamics of force transmission and bite forces during the movement of the apotele are calculated. The conserved organization of cheliceral musculature allows broad adaptation of the model to other chelicerate taxa.
机译:我们提出了关于使用同步加速器X射线显微断层照相术的非侵入性方法来模拟节肢动物口器的动力学和理论咬合力的第一份报告。数据的性质使我们能够精确地测量肌肉区域以及肌肉起源的空间几何形状,并将其插入到形态微观结构的生物力学模型中。我们调查了鳞翅目螨Archegozetes longisetosus(Acari,Oribatida),Chelicerata的模型有机体中的chelicera的功能形态。螯肉是一流的杠杆。固有的肌肉系统由一个带有六个肌肉束的羽毛形降压器和一个带有16个束的花束形提肌组成。与体重相比,相对咬力(力/质量〜(2/3))为390Nkg〜(-1),处于脊椎动物(≤260Nkg〜(-1))和十足类螯虾(≤ 915Nkg〜(-1))。计算了在potpot运动期间的力传递和咬合力的动力学。颊肌组织的保守组织允许该模型广泛适应其他颊肌分类群。

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