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An interactive three dimensional approach to anatomical description—the jaw musculature of the Australian laughing kookaburra (Dacelo novaeguineae)

机译:交互式的三维描述解剖方法-澳大利亚笑翠鸟(Dacelo novaeguineae)的下颌肌肉

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摘要

The investigation of form-function relationships requires a detailed understanding of anatomical systems. Here we document the 3-dimensional morphology of the cranial musculoskeletal anatomy in the Australian Laughing Kookaburra Dacelo novaeguineae, with a focus upon the geometry and attachments of the jaw muscles in this species. The head of a deceased specimen was CT scanned, and an accurate 3D representation of the skull and jaw muscles was generated through manual segmentation of the CT scan images, and augmented by dissection of the specimen. We identified 14 major jaw muscles: 6 in the temporal group (M. adductor mandibulae and M. pseudotemporalis), 7 in the pterygoid group (M. pterygoideus dorsalis and M. pterygoideus ventralis), and the single jaw abductor M. depressor mandibulae. Previous descriptions of avian jaw musculature are hindered by limited visual representation and inconsistency in the nomenclature. To address these issues, we: (1) present the 3D model produced from the segmentation process as a digital, fully interactive model in the form of an embedded 3D image, which can be viewed from any angle, and within which major components can be set as opaque, transparent, or hidden, allowing the anatomy to be visualised as required to provide a detailed understanding of the jaw anatomy; (2) provide a summary of the nomenclature used throughout the avian jaw muscle literature. The approach presented here provides considerable advantages for the documentation and communication of detailed anatomical structures in a wide range of taxa.
机译:形式功能关系的研究需要对解剖系统的详细了解。在这里,我们记录了澳大利亚笑翠鸟(Kookaburra Dacelo novaeguineae)颅骨肌肉骨骼解剖结构的3维形态,重点是该物种下颌肌肉的几何形状和附件。对死者标本的头部进行CT扫描,并通过手动分割CT扫描图像生成头骨和颌骨肌肉的准确3D表示,并通过解剖标本进行增强。我们确定了14个主要颌骨肌肉:颞组(内收肌下颌骨和假颞叶M.)6个,翼状group肉组(翼背M. pterygoideus腹侧肌)中的7个,以及单个下颌外展肌M.dpressor下颌。先前的鸟类下颌肌肉组织描述受到视觉表示受限和命名不一致的困扰。为了解决这些问题,我们:(1)将分割过程产生的3D模型呈现为嵌入式3D图像形式的数字化,完全交互式模型,可以从任何角度进行查看,并且可以在其中包含主要组件设置为不透明,透明或隐藏,以便根据需要可视化解剖结构,以提供对颚解剖结构的详细了解; (2)提供了整个禽类下颌肌肉文献中使用的术语的摘要。此处介绍的方法为各种分类单元中详细解剖结构的记录和通讯提供了相当大的优势。

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