Skorpiovenator bustingorryi的附肢肌肉学:首次尝试重建腹足类兽脚亚目动物的骨盆和后肢肌肉组织。

IF 1.8 4区 医学 Q2 ANATOMY & MORPHOLOGY Anatomical Record-Advances in Integrative Anatomy and Evolutionary Biology Pub Date : 2024-07-11 DOI:10.1002/ar.25532
Mauricio A. Cerroni, Alejandro Otero, Fernando E. Novas
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引用次数: 0

摘要

我们展示了非龙类 Skorpiovenator bustingorryi 的骨盆和后肢肌肉组织,这是迄今为止在角龙类兽脚类动物中最全面的肌肉重建。我们利用现存的系统发育支架方法,重建了现存古龙中常见的39块肌肉。通过骨骼相关性的鉴定,我们确认了大腿和后肢的肌肉,包括膝关节伸肌、髂腓骨肌、胫骨外侧屈肌、尾骨肌、耻骨肌,以及对足的伸展和屈曲有重要作用的嵴肌(如胫骨前肌、腓肠肌)。此外,还重建了自足固有肌肉,其功能包括伸展(拇趾伸肌2-4)、屈曲(拇趾屈肌浅肌)、趾间内收(趾骨间背肌)和外展(趾骨间跖肌、趾骨外展肌4)。像Skorpiovenator这样的类始祖鸟显示出髂骨前、后髋关节叶片很深,而且胫骨嵴增大,这将有助于增加与髋关节屈曲和后肢伸展有关的肌肉的力矩臂。此外,与旋前有关的蹬地肌肉可能存在,但有所减少(如旋前肌)。尽管现生外群(如鳄鱼的跖骨和鸟类的跗蹠)在自趾形态上存在一些显著差异,但本研究使我们能够假设在Skorpiovenator中存在几种蹬踏肌肉。这些肌肉不会像Neornithes那样排列成腱状束,而是类似于鳄鱼的情况,在跖骨的足底和背侧由肉质腹部形成几层。Skorpiovenator的肌肉组织是今后研究长脚类动物生物力学的关键,包括将功能形态学和人类学数据结合起来。
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Appendicular myology of Skorpiovenator bustingorryi: A first attempt to reconstruct pelvic and hindlimb musculature in an abelisaurid theropod

We present the pelvic and hindlimb musculature of the abelisaurid Skorpiovenator bustingorryi, constituting the most comprehensive muscle reconstruction to date in ceratosaur theropods. Using extant phylogenetic bracket method, we reconstructed 39 muscles that can commonly found in extant archosaurs. Through the identification of bone correlates, we recognized thigh and hindlimb muscles including knee extensors, m. iliofibularis, m. flexor tibialis externus, mm. caudofemorales, mm. puboischiofemorales, and crus muscles important in foot extension and flexion (e.g., m. tibialis anterior, mm. gastrocnemii). Also, autopodial intrinsic muscles were reconstructed whose function involve extension (m. extensor digiti 2–4), flexion (mm. flexor digitorum brevis superficialis), interdigital adduction (m. interosseus dorsalis) and abduction (m. interosseous plantaris, m. abductor 4). Abelisaurids like Skorpiovenator show a deep pre- and postacetabular blade of the ilia and enlarged cnemial crests, which would have helped increasing the moment arm of muscles related to hip flexion and hindlimb extension. Also, pedal muscles related to pronation were probably present but reduced (e.g., m. pronator profundus). Despite some gross differences in the autopodial morphology in extant outgroups (e.g., crocodilian metatarsus and avian tarsometatarsus), the present study allows us to hypothesize several pedal muscles in Skorpiovenator. These muscles would not be arranged in tendinous bundles as in Neornithes, but rather the condition would be similar to that of crocodilians with several layers formed by fleshy bellies on the plantar and dorsal aspects of the metatarsus. The musculature of Skorpiovenator is key for future studies concerning abelisaurid biomechanics, including the integration of functional morphology and ichnological data.

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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
期刊最新文献
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