Digital dissection of the head of the rock dove (Columba livia) using contrast-enhanced computed tomography.

IF 1.7 3区 生物学 Q2 ZOOLOGY Zoological Letters Pub Date : 2019-06-10 eCollection Date: 2019-01-01 DOI:10.1186/s40851-019-0129-z
Marc E H Jones, David J Button, Paul M Barrett, Laura B Porro
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引用次数: 21

Abstract

The rock dove (or common pigeon), Columba livia, is an important model organism in biological studies, including research focusing on head muscle anatomy, feeding kinematics, and cranial kinesis. However, no integrated computer-based biomechanical model of the pigeon head has yet been attempted. As an initial step towards achieving this goal, we present the first three-dimensional digital dissection of the pigeon head based on a contrast-enhanced computed tomographic dataset achieved using iodine potassium iodide as a staining agent. Our datasets enable us to visualize the skeletal and muscular anatomy, brain and cranial nerves, and major sense organs of the pigeon, including very small and fragile features, as well as maintaining the three-dimensional topology of anatomical structures. This work updates and supplements earlier anatomical work on this widely used laboratory organism. We resolve several key points of disagreement arising from previous descriptions of pigeon anatomy, including the precise arrangement of the external adductor muscles and their relationship to the posterior adductor. Examination of the eye muscles highlights differences between avian taxa and shows that pigeon eye muscles are more similar to those of a tinamou than they are to those of a house sparrow. Furthermore, we present our three-dimensional data as publicly accessible files for further research and education purposes. Digital dissection permits exceptional visualisation and will be a valuable resource for further investigations into the head anatomy of other bird species, as well as efforts to reconstruct soft tissues in fossil archosaurs.

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使用增强对比的计算机断层扫描对岩鸽(Columba livia)头部进行数字解剖。
岩鸽(或普通鸽子)是生物学研究中重要的模式生物,包括头部肌肉解剖学、摄食运动学和颅运动学的研究。然而,目前还没有基于计算机的鸽子头生物力学模型。作为实现这一目标的第一步,我们提出了基于对比度增强计算机断层扫描数据集的第一个三维数字解剖鸽子头,使用碘化钾作为染色剂。我们的数据集使我们能够可视化鸽子的骨骼和肌肉解剖结构,大脑和脑神经以及主要感觉器官,包括非常小和脆弱的特征,以及维持解剖结构的三维拓扑结构。这项工作更新和补充了早期对这种广泛使用的实验室生物的解剖工作。我们解决了先前鸽子解剖描述中出现的几个关键点的分歧,包括外内收肌的精确排列及其与后内收肌的关系。对眼肌的检查突出了鸟类分类群之间的差异,并表明鸽子的眼肌更类似于雀鸟的眼肌,而不是家麻雀的眼肌。此外,我们将我们的三维数据作为公开访问的文件,以供进一步的研究和教育目的。数字解剖允许特殊的可视化,将是进一步研究其他鸟类头部解剖的宝贵资源,以及重建化石始祖的软组织。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Zoological Letters
Zoological Letters Agricultural and Biological Sciences-Animal Science and Zoology
CiteScore
3.60
自引率
0.00%
发文量
12
审稿时长
10 weeks
期刊介绍: Zoological Letters is an open access journal that publishes new and important findings in the zoological sciences. As a sister journal to Zoological Science, Zoological Letters covers a wide range of basic fields of zoology, from taxonomy to bioinformatics. We also welcome submissions of paleontology reports as part of our effort to contribute to the development of new perspectives in evolutionary zoology. Our goal is to serve as a global publishing forum for fundamental researchers in all fields of zoology.
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