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Caecilian jaw closing mechanics: integrating two muscle systems

机译:Caecilian下颌闭合力学:整合两个肌肉系统

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摘要

Caecilians (Lissamphibia: Gymnophiona) are unique among vertebrates in having two sets of jaw-closing muscles, one on either side of the jaw joint. Using data from high-resolution X-ray radiation computed tomography scans, we modelled the effect of these two muscle groups (mm. levatores mandibulae and m. interhyoideus posterior) on bite force over a range of gape angles, employing a simplified lever arm mechanism that takes into account muscle cross-sectional area and fibre angle. Measurements of lever arm lengths, muscle fibre orientations and physiological cross-sectional area of cranial muscles were available from three caecilian species: Ichthyophis cf. kohtaoensis; Siphonops annulatus; and Typhlonectes natans. The maximal gape of caecilians is restricted by a critical gape angle above which the mm. levatores mandibulae will open the jaw and destabilize the mandibular joint. The presence of destabilizing forces in the caecilian jaw mechanism may be compensated for by a mandibular joint in that the fossa is wrapped around the condyle to resist dislocation. The caecilian skull is streptostylic; the quadrate-squamosal complex moves with respect to the rest of the skull. This increases the leverage of the jaw-closing muscles. We also demonstrate that the unusual jaw joint requires streptostyly because there is a dorsolateral movement of the quadrate-squamosal complex when the jaw closes. The combination of the two jaw-closing systems results in high bite forces over a wide range of gape angles, an important advantage for generalist feeders such as caecilians. The relative sizes and leverage mechanics of the two closing systems allow one to exert more force when the other has a poor mechanical advantage. This effect is seen in all three species we examined. In the aquatic T. natans, with its less well-roofed skull, there is a larger contribution of the mm. levatores mandibulae to total bite force than in the terrestrial I. cf. kohtaoensis and S. annulatus.
机译:凯撒人(Lissamphibia:Gymnophiona)在脊椎动物中很独特,它具有两组闭合颚的肌肉,一组位于颚关节的两侧。使用来自高分辨率X射线计算机断层扫描的数据,我们采用简化的杠杆臂机制,模拟了这两个肌肉群(下颌毫米肌和后舌间肌)对一定间隙角度上的咬合力的影响。考虑到肌肉的横截面积和纤维角度。可以从以下三种凯撒科物种中测量颅骨的杠杆臂长度,肌纤维取向和生理性横断面:Ichthyophis cf. kohtaoensis;虹吸管和台风凯撒人的最大缝隙受到临界缝隙角的限制,在该临界缝隙角以上,mm。下颌提肌将张开颌骨并破坏下颌关节的稳定性。通过将下窝包裹在compensate骨周围以抵抗脱位,可以通过下颌关节来补偿盲肠颌机构中存在的不稳定力。盲肠颅骨是链状的。正方形-正方形的复合体相对于头骨的其余部分移动。这增加了下颌闭合肌肉的杠杆作用。我们还证明了异常的颌骨关节需要链节,因为当颌骨闭合时,四方形鳞状复合体的背外侧运动。两种钳口闭合系统的组合可在较大的间隙角度范围内产生较高的咬合力,这对多才多艺的饲养者(如凯撒人)具有重要的优势。两个关闭系统的相对大小和杠杆作用机制使一个系统在另一方机械性能不佳时可以施加更大的力。在我们检查的所有三个物种中都可以看到这种效果。在水生T. natans中,其颅骨的顶部不太好,mm的贡献更大。下颌提肌比地面I的总咬合力。 kohtaoensis和S.annulatus。

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