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Inter-vertebral flexibility of the ostrich neck: implications for estimating sauropod neck flexibility.鸵鸟颈部的椎间灵活性:对估计蜥脚类恐龙颈部灵活性的启示。
PLoS One. 2013 Aug 14;8(8):e72187. doi: 10.1371/journal.pone.0072187. eCollection 2013.
2
Where are we in understanding salamander locomotion: biological and robotic perspectives on kinematics.我们对蝾螈运动的理解处于什么阶段:运动学的生物学和机器人学视角
Biol Cybern. 2013 Oct;107(5):529-44. doi: 10.1007/s00422-012-0540-4. Epub 2012 Dec 19.
3
Using the American alligator and a repeated-measures design to place constraints on in vivo shoulder joint range of motion in dinosaurs and other fossil archosaurs.运用美洲短吻鳄并采用重复测量设计,对恐龙和其他化石主龙类的活体肩关节活动范围进行限制。
J Exp Biol. 2013 Jan 15;216(Pt 2):275-84. doi: 10.1242/jeb.074229. Epub 2012 Sep 12.
4
Three-dimensional limb joint mobility in the early tetrapod Ichthyostega.早期四足鱼石螈的三维肢体关节活动性。
Nature. 2012 Jun 28;486(7404):523-6. doi: 10.1038/nature11124.
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A test of the validity of range of motion studies of fossil archosaur elbow mobility using repeated-measures analysis and the extant phylogenetic bracket.使用重复测量分析和现生物种进化枝的时间框架检验化石主龙类肘部活动范围研究的有效性。
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An approach to comparative anatomy of the acetabulum from amphibians to primates.从两栖动物到灵长类动物髋臼的比较解剖学研究方法。
Anat Histol Embryol. 2011 Dec;40(6):466-73. doi: 10.1111/j.1439-0264.2011.01095.x. Epub 2011 Jun 30.
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Calcified cartilage shape in archosaur long bones reflects overlying joint shape in stress-bearing elements: Implications for nonavian dinosaur locomotion.蜥脚形类恐龙长骨中钙化软骨的形状反映了承重骨上关节的形状:对非鸟兽脚类恐龙运动方式的启示。
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Cartilaginous epiphyses in extant archosaurs and their implications for reconstructing limb function in dinosaurs.现存的槽齿类恐龙的软骨骺及其对恐龙四肢功能重建的意义。
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Limb kinematics during locomotion in the two-toed sloth (Choloepus didactylus, Xenarthra) and its implications for the evolution of the sloth locomotor apparatus.两趾树懒(Choloepus didactylus,贫齿目)运动过程中的肢体运动学及其对树懒运动器官进化的影响。
Zoology (Jena). 2010 Aug;113(4):221-34. doi: 10.1016/j.zool.2009.11.003. Epub 2010 Jul 15.
10
Shape of articular surface of crocodilian (Archosauria) elbow joints and its relevance to sauropsids.鳄鱼(主龙类)肘关节关节面的形状及其与蜥形纲动物的关系。
J Morphol. 2010 Jul;271(7):883-96. doi: 10.1002/jmor.10846.

软组织对鬣蜥髋关节离体活动度的影响:与活体运动的比较及其对化石四足 sprawlers 关节运动的意义

Soft tissue influence on ex vivo mobility in the hip of Iguana: comparison with in vivo movement and its bearing on joint motion of fossil sprawling tetrapods.

作者信息

Arnold Patrick, Fischer Martin S, Nyakatura John A

机构信息

Institut für Spezielle Zoologie und Evolutionsbiologie mit Phyletischem Museum, Friedrich-Schiller-Universität, Jena, Germany.

出版信息

J Anat. 2014 Jul;225(1):31-41. doi: 10.1111/joa.12187. Epub 2014 Apr 25.

DOI:10.1111/joa.12187
PMID:24762236
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4089344/
Abstract

The reconstruction of a joint's maximum range of mobility (ROM) often is a first step when trying to understand the locomotion of fossil tetrapods. But previous studies suggest that the ROM of a joint is restricted by soft tissues surrounding the joint. To expand the limited informative value of ROM studies for the reconstruction of a fossil species' locomotor characteristics, it is moreover necessary to better understand the relationship of ex vivo ROM with the actual in vivo joint movement. To gain insight into the relationship between ex vivo mobility and in vivo movement, we systematically tested for the influence of soft tissues on joint ROM in the hip of the modern lizard Iguana iguana. Then, we compared the ex vivo mobility to in vivo kinematics of the hip joint in the same specimens using X-ray sequences of steady-state treadmill locomotion previously recorded. With stepwise removal of soft tissues and a repeated-measurement protocol, we show that soft tissues surrounding the hip joint considerably limit ROM, highlighting the problems when joint ROM is deduced from bare bones only. We found the integument to have the largest effect on the range of long-axis rotation, pro- and retraction. Importantly, during locomotion the iguana used only a fragment of the ROM that was measured in our least restrictive dissection situation (i.e. pelvis and femur only conjoined by ligaments), demonstrating the discrepancy between hip joint ROM and actual in vivo movement. Our study emphasizes the necessity for caution when attempting to reconstruct joint ROM or even locomotor kinematics from fossil bones only, as actual in vivo movement cannot be deduced directly from any condition of cadaver mobility in Iguana and likely in other tetrapods.

摘要

在试图了解化石四足动物的运动时,重建关节的最大活动范围(ROM)通常是第一步。但先前的研究表明,关节的ROM受到关节周围软组织的限制。为了扩大ROM研究在重建化石物种运动特征方面有限的信息价值,还必须更好地理解离体ROM与实际体内关节运动之间的关系。为了深入了解离体活动度与体内运动之间的关系,我们系统地测试了软组织对现代鬣蜥(Iguana iguana)髋关节ROM的影响。然后,我们使用先前记录的稳态跑步机运动的X射线序列,将同一标本的髋关节离体活动度与体内运动学进行了比较。通过逐步去除软组织并采用重复测量方案,我们表明髋关节周围的软组织显著限制了ROM,突出了仅从裸骨推断关节ROM时存在的问题。我们发现体表对长轴旋转、前伸和后缩范围的影响最大。重要的是,在运动过程中,鬣蜥仅使用了在我们限制最小的解剖情况下(即仅通过韧带连接的骨盆和股骨)测量的ROM的一部分,这表明髋关节ROM与实际体内运动之间存在差异。我们的研究强调,仅从化石骨骼重建关节ROM甚至运动运动学时必须谨慎,因为不能直接从鬣蜥以及可能其他四足动物的尸体活动的任何情况推断实际体内运动。