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Testing hypotheses for the function of the carnivoran baculum using finite-element analysis

机译:使用有限元分析检验食肉动物杆假说的功能

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摘要

The baculum (os penis) is a mineralized bone within the glans of the mammalian penis and is one of the most morphologically diverse structures in the mammal skeleton. Recent experimental work provides compelling evidence for sexual selection shaping the baculum, yet the functional mechanism by which this occurs remains unknown. Previous studies have tested biomechanical hypotheses for the role of the baculum based on simple metrics such as length and diameter, ignoring the wealth of additional shape complexity present. For the first time, to our knowledge, we apply a computational simulation approach (finite-element analysis; FEA) to quantify the three-dimensional biomechanical performance of carnivoran bacula (n = 74) based upon high-resolution micro-computed tomography scans. We find a marginally significant positive correlation between sexual size dimorphism and baculum stress under compressive loading, counter to the ‘vaginal friction’ hypothesis of bacula becoming more robust to overcome resistance during initial intromission. However, a highly significant negative relationship exists between intromission duration and baculum stress under dorsoventral bending. Furthermore, additional FEA simulations confirm that the presence of a ventral groove would reduce deformation of the urethra. We take this as evidence in support of the ‘prolonged intromission’ hypothesis, suggesting the carnivoran baculum has evolved in response to pressures on the duration of copulation and protection of the urethra.
机译:杆状杆菌(os penis)是哺乳动物阴茎龟头内的矿化骨骼,是哺乳动物骨骼中形态最多样化的结构之一。最近的实验工作为形成杆状菌的性选择提供了令人信服的证据,但是发生这种现象的功能机制仍然未知。先前的研究基于长度和直径等简单指标,测试了生物力学假说对杆状杆菌的作用,而忽略了目前存在的其他形状复杂性的丰富性。就我们所知,我们首次使用计算模拟方法(有限元分析; FEA),基于高分辨率的微型计算机断层扫描技术,对食肉动物球菌(n = 74)的三维生物力学性能进行了量化。我们发现在压缩负荷下,性大小二态性和杆状病毒应力之间存在显着的正相关,这与小肠的“阴道摩擦”假说在初次引入时变得更加强大以克服抵抗力相反。然而,在腹背弯曲下,持续时间与杆状应力之间存在极显着的负相关关系。此外,额外的FEA模拟证实腹侧沟的存在将减少尿道的变形。我们以此为证据,支持“长期引入”假说,这表明食肉动物的杆状病毒已经进化,以应对交配持续时间和保护尿道的压力。

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