Lagomorph cranial biomechanics and the functional significance of the unique fenestrated rostrum of leporids.

IF 1.8 4区 医学 Q2 ANATOMY & MORPHOLOGY
Amber P Wood-Bailey, Alana C Sharp
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引用次数: 0

Abstract

The crania of leporid lagomorphs are uniquely fenestrated, including the posterior cranial bones and the lateral portion of the maxilla. The functional significance of the highly fenestrated rostrum has received considerably little attention, despite being absent in other mammalian herbivores with a long rostrum. This unique feature is of particular interest when considering functional relationships between the loading regime and cranial structure. Two primary hypotheses have been suggested: maxillary fenestrations may be associated with the transmission and redirection of incisal occlusal forces, or fenestrations may reduce skull weight to assist with maneuverability and increase running speed. Here we apply a comparative approach using finite element analysis to determine how the overall stress and strain environment is affected by the presence or absence of maxillary fenestrations. We compare three lagomorph species with various degrees of latticing in the fenestrated rostrum with two macropods that do not have fenestrations. We then produce theoretical models of the three lagomorphs by filling in the fenestrated region. Our results show that the presence of fenestrations makes little difference to the overall stress experienced through the cranium and does not impact the efficiency of incisor biting. This adds to the increasing evidence that features of lagomorph cranial morphology correlate with locomotor demands, adapting to loads other than mastication. Modulating cranial mass with fenestrations may provide the benefits of a lighter skull while still providing enough surface area for muscle attachments.

羊足类独特开窗喙的颅生物力学及功能意义。
狐猴的颅骨有独特的开孔,包括颅骨后部和上颌骨的外侧部分。尽管在其他具有长喙的食草哺乳动物中并不存在,但高度开窗喙的功能意义却很少受到关注。当考虑载荷制度和颅骨结构之间的功能关系时,这种独特的特征是特别有趣的。提出了两种主要假设:上颌开窗可能与切牙咬合力的传递和重定向有关,或者开窗可能减轻颅骨重量以帮助机动性和提高运行速度。在这里,我们采用比较的方法使用有限元分析来确定整体应力和应变环境是如何受到上颌开窗的存在或不存在的影响。我们比较了三种不同程度的lagomorph物种在开窗的平台与两个大足类动物没有开窗。然后,我们通过填充开孔区域来产生三种lagomorphi的理论模型。我们的研究结果表明,开窗的存在对通过头盖骨经历的总体压力几乎没有影响,并且不影响切牙咬合的效率。越来越多的证据表明,lagomorph颅形态特征与运动需求相关,适应咀嚼以外的负荷。用开窗调节颅骨质量可以提供更轻的颅骨的好处,同时仍然为肌肉附着提供足够的表面积。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
4.80
自引率
15.00%
发文量
266
审稿时长
4 months
期刊介绍: The Anatomical Record
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