首页> 外文期刊>Acta Zoologica >Wing and hindlimb myology of vultures and raptors (Accipitriformes) in relation to locomotion and foraging
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Wing and hindlimb myology of vultures and raptors (Accipitriformes) in relation to locomotion and foraging

机译:秃鹰和猛禽(蜘蛛形)的翅膀和后肢与运动和觅食的关系

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Herein, we compare functional muscle properties among convergent forms of large, obligate avian scavengers. We performed quantitative analyses of all the muscle masses and cross-sectional areas (CSA) of the wings and hindlimbs of five species from two families, Cathartidae (New World vultures; Cathartes aura and Vultur gryphus) and Accipitridae (Old World vultures and raptors; Gyps africanus, Aquila rapax, and Buteo lineatus). These species comprise two paraphyletic functional groups, raptors (Aquila and Buteo) and vultures (Gyps, Cathartes, and Vultur). Our ordination analyses based on all of the muscles of the wings, hindlimbs, and wing and hindlimb muscles combined produced patterns that appeared to be more related to phylogeny, with a hint of a functional signal in wing muscle CSA. However, when wing muscles were grouped according to their functional roles (upstroke, downstroke, and wing stabilization), the percentages of mass and CSA allocated to the upstroke and stabilizing muscles were 1.4-5% greater in the vultures than in the raptors. Conversely, when hindlimb muscles were grouped according to their roles in grasping and terrestrial locomotion, the percentages of mass and CSA allocated to grasping muscles were 5.9-14% greater in the raptors. Our results provide a baseline for future lines of inquiry aimed at understanding how muscle mass and CSA are affected differentially across locomotor modules, possibly in response to differential demands on wing and hindlimb function experienced by these disparate accipitriform clades.
机译:在本文中,我们比较了大型专性鸟类清除剂的会聚形式之间的功能性肌肉特性。我们对两个科的五个物种的翅和后肢的所有肌肉质量和翅膀的横截面积(CSA)进行了定量分析,C科(新世界秃v; Cathattes aura和秃鹰gryphus)和and科(旧世界秃and和猛禽;非洲y,天鹰座(Aquila rapax)和But尾线(Buteo lineatus)。这些物种包括两个共生的功能组,猛禽(天鹰座和But)和秃鹰(吉普斯,凯瑟特斯和秃鹰)。我们基于机翼,后肢以及机翼和后肢肌肉的所有肌肉进行的协调分析结合了所产生的模式,这些模式似乎与系统发育更为相关,并暗示了机翼肌肉CSA中的功能性信号。但是,根据机翼的功能作用(上冲程,下冲程和机翼稳定)对翼状肌肉进行分组时,在秃ul中,分配给上冲程和稳定肌的质量和CSA的百分比要比猛禽高1.4-5%。相反,按后肢肌肉在抓地力和地面运动中的作用进行分组时,猛禽中分配给抓地肌的质量和CSA百分比增加5.9-14%。我们的结果为将来的研究方向提供了基线,旨在了解运动模块之间肌肉质量和CSA的差异性,可能是由于这些不同的针形类进化枝对机翼和后肢功能的差异性要求所致。

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