A comparative study on grasping-related muscles in five Accipitriformes species

IF 1.8 4区 医学 Q2 ANATOMY & MORPHOLOGY Anatomical Record-Advances in Integrative Anatomy and Evolutionary Biology Pub Date : 2024-03-27 DOI:10.1002/ar.25433
Lin Wang, Xiyuan Liu, Zihui Zhang
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Abstract

Accipitriformes are diverse in their prey preferences and use their grasping feet for hunting. Little is known about the architectural design of muscles related to grasping among species of different sizes, diets, and foraging behaviors. In the present study, we report quantitative data and analysis of the pelvic musculature of the Japanese sparrowhawk (Accipiter gularis), Eurasian sparrowhawk (Accipiter nisus), common buzzard (Buteo buteo), northern goshawk (Accipiter gentilis), and cinereous vulture (Aegypius monachus). As expected, mass and architecture of the considered muscles were very different between the cinereous vulture and the four other species. The cinereous vulture allocates more mass and physiological cross-sectional area (PCSA) to the proximally inserted flexor muscles, which indicates the rudimentary grasping ability of the foot and is a myological reflection of its carrion preference. Furthermore, in the cinereous vulture, muscles were built with the lowest architectural index (AI) compared with the other species, and the intrinsic foot muscles were short-fibered, which is disadvantageous for rapid manipulation and foot dexterity. The other four species, as a whole, featured large flexor hallucis longus (FHL) muscles and better development of distally inserted flexors, reflecting their predatory lifestyle. Some differences were also found between the species that consumed birds and those that consumed mammals. The two avivorous species were superior in AI and fiber length of the intrinsic foot muscles which are suitable for good hunting speed and digit flexibility, the prerequisition for hunting agile prey.

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对五种翼手目动物抓握相关肌肉的比较研究。
箭足类对猎物的喜好多种多样,并利用其抓握足进行捕猎。对于不同体型、食性和觅食行为的物种之间与抓握有关的肌肉结构设计,我们知之甚少。在本研究中,我们报告了日本雀鹰(Accipiter gularis)、欧亚雀鹰(Accipiter nisus)、普通鵟(Buteo buteo)、北方大鹰(Accipiter gentilis)和阴鹫(Aegypius monachus)骨盆肌肉组织的定量数据和分析。不出所料,秃鹫和其他四种动物的肌肉质量和结构大不相同。秃鹫将更多的质量和生理横截面积(PCSA)分配给了近端插入的屈肌,这表明秃鹫足部的抓取能力很初级,也从肌肉学角度反映了秃鹫对腐肉的偏好。此外,与其他物种相比,秃鹫的肌肉结构指数(AI)最低,足部固有肌肉纤维较短,不利于快速操纵和足部灵活性。其他四个物种作为一个整体,具有较大的拇长屈肌(FHL)和较发达的远端插入屈肌,这反映了它们的捕食生活方式。捕食鸟类和捕食哺乳动物的物种之间也存在一些差异。这两种食肉类动物的足部固有肌肉的AI和纤维长度均优于其他食肉类动物,而这两种肌肉的AI和纤维长度适于良好的捕猎速度和手指灵活性,这是捕猎敏捷猎物的先决条件。
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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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