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塔兰帕亚拉戈苏龙(主龙形类,恐龙形类)的后肢生物力学,并对骨骼形态进行评论

Hindlimb biomechanics of Lagosuchus talampayensis (Archosauria, Dinosauriformes), with comments on skeletal morphology.

作者信息

Otero Alejandro, Bishop Peter J, Hutchinson John R

机构信息

CONICET División Paleontología de Vertebrados (Anexo Laboratorios), La Plata, Argentina.

Structure and Motion Laboratory, Department of Comparative Biomedical Sciences, Royal Veterinary College, North Mymms, Hatfield, UK.

出版信息

J Anat. 2025 Jun;246(6):948-973. doi: 10.1111/joa.14183. Epub 2024 Dec 4.

Abstract

Lagosuchus talampayensis is a small-bodied (~0.5 m long) Late Triassic dinosauriform archosaur from Argentina. Lagosuchus long has been a pivotal taxon for reconstructing the evolution of form and function on the dinosaur lineage. This importance is because it has a mix of ancestral archosaurian traits, such as a small pelvis with a mostly closed acetabulum lacking prominences that would restrict hip mobility much, with derived "dinosaurian" traits such as bipedalism, proximally shifted thigh muscle insertions, elongate hindlimbs, "advanced mesotarsal" ankle joints and digitigrade feet. Here, to quantify key functional traits related to the locomotor biomechanics of Lagosuchus, we build a three-dimensional musculoskeletal model, focussing on morphofunctional analysis of the pelvic limb. We survey skeletal material that we have digitised, pointing out hitherto undescribed features and elements, many of which are from taxa other than Lagosuchus. Next, we select ideal elements amongst these to construct a composite model, and articulate adjacent body segments into joints, then estimate body shape including centre of mass, and add muscle paths to create a musculoskeletal model. Finally, we use two methods to quantify the hindlimb muscle parameters ("architecture") in the model. We find that they produce similar estimates of force-generating capacities, and compare these data to the few available data from other archosaurs in an evolutionary context, to reconstruct fundamental patterns of changes in muscle architecture and pelvic limb morphology. Our model forms a valuable basis for future quantitative analyses of locomotor function and its evolution in early archosaurs, and an example of how to navigate decision-making for modelling problematic specimens.

摘要

塔兰佩耶斯拉戈苏斯是一种来自阿根廷的小型(约0.5米长)晚三叠世似恐龙主龙类。长期以来,拉戈苏斯一直是重建恐龙谱系形态和功能演化的关键分类单元。其重要性在于它兼具原始主龙类特征,比如骨盆小,髋臼大多封闭,没有会严重限制髋关节活动的突出部分;同时还具有衍生的“恐龙类”特征,如两足行走、大腿肌肉插入点向近端移动、后肢拉长、“进步的中跗骨”踝关节和趾行足。在此,为了量化与拉戈苏斯运动生物力学相关的关键功能特征,我们构建了一个三维肌肉骨骼模型,重点对盆肢进行形态功能分析。我们勘查了已数字化的骨骼材料,指出了迄今未描述的特征和骨骼元素,其中许多来自拉戈苏斯以外的分类单元。接下来,我们在这些元素中挑选理想的元素来构建一个复合模型,将相邻身体节段连接成关节,然后估算包括质心在内的身体形状,并添加肌肉路径以创建一个肌肉骨骼模型。最后,我们使用两种方法来量化模型中后肢肌肉参数(“结构”)。我们发现它们对力产生能力的估计相似,并在进化背景下将这些数据与其他主龙类的少量可用数据进行比较,以重建肌肉结构和盆肢形态变化的基本模式。我们的模型为未来早期主龙类运动功能及其演化的定量分析奠定了宝贵基础,也为例示了如何在对有问题的标本进行建模时做出决策。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d57/12079757/8ca7ffc2e7d3/JOA-246-948-g007.jpg

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