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已灭绝有袋动物巨袋鼠(Diprotodon optatum)下颌内收肌的三维数字重建。

Three dimensional digital reconstruction of the jaw adductor musculature of the extinct marsupial giant Diprotodon optatum.

机构信息

School of Earth, Atmosphere and Environment, Monash University , Clayton, Victoria , Australia.

出版信息

PeerJ. 2014 Aug 14;2:e514. doi: 10.7717/peerj.514. eCollection 2014.

Abstract

The morphology and arrangement of the jaw adductor muscles in vertebrates reflects masticatory style and feeding processes, diet and ecology. However, gross muscle anatomy is rarely preserved in fossils and is, therefore, heavily dependent on reconstructions. An undeformed skull of the extinct marsupial, Diprotodon optatum, recovered from Pleistocene sediments at Bacchus Marsh in Victoria, represents the most complete and best preserved specimen of the species offering a unique opportunity to investigate functional anatomy. Computed tomography (CT) scans and digital reconstructions make it possible to visualise internal cranial anatomy and predict location and morphology of soft tissues, including muscles. This study resulted in a 3D digital reconstruction of the jaw adductor musculature of Diprotodon, revealing that the arrangement of muscles is similar to that of kangaroos and that the muscle actions were predominantly vertical. 3D digital muscle reconstructions provide considerable advantages over 2D reconstructions for the visualisation of the spatial arrangement of the individual muscles and the measurement of muscle properties (length, force vectors and volume). Such digital models can further be used to estimate muscle loads and attachment sites for biomechanical analyses.

摘要

脊椎动物的颌内收肌的形态和排列反映了咀嚼方式和进食过程、饮食和生态。然而,大体肌肉解剖结构很少在化石中保存下来,因此严重依赖于重建。在维多利亚州 Bacchus Marsh 的更新世沉积物中发现的已灭绝的有袋动物 Diprotodon optatum 的未变形头骨,是该物种最完整和保存最完好的标本,为研究功能解剖学提供了独特的机会。计算机断层扫描 (CT) 扫描和数字重建使得可视化内部颅解剖结构以及预测软组织(包括肌肉)的位置和形态成为可能。这项研究对 Diprotodon 的颌内收肌进行了 3D 数字重建,揭示了肌肉的排列与袋鼠相似,肌肉的作用主要是垂直的。3D 数字肌肉重建在可视化单个肌肉的空间排列和测量肌肉特性(长度、力矢量和体积)方面具有比 2D 重建更大的优势。这种数字模型可以进一步用于估计肌肉负荷和生物力学分析的附着部位。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d6de/4137671/c0969fc963ac/peerj-02-514-g001.jpg

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