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通过基于扩散碘的对比增强计算机断层扫描对蝙蝠颌部肌肉组织的比较解剖学研究

Comparative Anatomy of Bat Jaw Musculature via Diffusible Iodine-Based Contrast-Enhanced Computed Tomography.

作者信息

Santana Sharlene E

机构信息

Department of Biology and Burke Museum of Natural History and Culture, University of Washington, Seattle, Washington, 98125.

出版信息

Anat Rec (Hoboken). 2018 Feb;301(2):267-278. doi: 10.1002/ar.23721.

DOI:10.1002/ar.23721
PMID:29330950
Abstract

Noctilionoid bats exhibit an extraordinary array of cranial specializations that match diverse diets, including variation in jaw musculature physiological cross-sectional areas (PCSA), lever arms, and relative contribution to bite force. Although previous research in this group has linked variation in skull shape and muscle mechanics to biting performance, there are still important gaps about the anatomical underpinnings of noctilionoid dietary adaptations, including the degree of compartmentalization of the jaw musculature, and whether and how muscle attachment sites have evolved across noctilionoid species that specialize on derived diets. Here, we paired dissections with Diffusible Iodine-based Contrast-Enhanced Computed Tomography (diceCT) scanning in a comparative anatomical study of the jaw musculature of 12 noctilionoid species that span all diets found within the clade. We evaluated changes in jaw muscle attachments across species, identified differences in muscle compartments, examined scaling relationships, and compared the power of diceCT and dissections to generate morphological data. We found that diceCT enables more detailed investigation of muscle compartments and generates greater PCSA values, but these are strongly correlated with estimates from dissections. Jaw muscle origin and insertion sites are relatively conserved across noctilionoids when compared to other species-rich and ecologically-diverse mammalian groups. However, we found interspecific differences in the degree of separation of the m. masseter, and in the scaling relationships of different jaw muscles with body mass, both of which might be associated with diet and feeding behavior specialization. Our study highlights an unexplored diversity in the compartmentalization and fiber architecture of bat jaw muscles. Anat Rec, 301:267-278, 2018. © 2018 Wiley Periodicals, Inc.

摘要

舟蝠科蝙蝠展现出一系列非凡的颅骨特化特征,这些特征与多样的饮食相匹配,包括颌部肌肉生理横截面积(PCSA)、力臂以及对咬合力的相对贡献的变化。尽管此前对该类群的研究已将头骨形状和肌肉力学的变化与咬合力表现联系起来,但关于舟蝠科饮食适应性的解剖学基础仍存在重要空白,包括颌部肌肉的分隔程度,以及在以特化饮食为生的舟蝠科物种中,肌肉附着点是否以及如何进化。在此,我们在一项比较解剖学研究中,将解剖与基于可扩散碘的对比增强计算机断层扫描(diceCT)相结合,研究对象为涵盖该分支内所有饮食类型的12种舟蝠科物种的颌部肌肉。我们评估了不同物种间颌部肌肉附着点的变化,识别了肌肉隔室的差异,研究了比例关系,并比较了diceCT和解剖在生成形态学数据方面的能力。我们发现,diceCT能够更详细地研究肌肉隔室,并生成更大的PCSA值,但这些值与解剖估计值高度相关。与其他物种丰富且生态多样的哺乳动物类群相比,舟蝠科动物的颌部肌肉起止点相对保守。然而,我们发现咬肌的分隔程度以及不同颌部肌肉与体重的比例关系存在种间差异,这两者可能都与饮食和摄食行为特化有关。我们的研究突出了蝙蝠颌部肌肉在隔室化和纤维结构方面未被探索的多样性。《解剖学记录》,301:267 - 278,2018年。© 2018威利期刊公司

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