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海豹阴茎骨(阴茎骨)的微观结构:使用同步加速器和实验室微计算机断层扫描进行的 3D 形态计量学检查。

Microarchitecture of the penis bone (baculum) of a seal: A 3D morphometric examination using synchrotron and laboratory micro-computed tomography.

机构信息

Department of Biology, Memorial University of Newfoundland, Canada.

Division of BioMedical Sciences, Faculty of Medicine, Memorial University of Newfoundland, Canada.

出版信息

Anat Rec (Hoboken). 2024 Aug;307(8):2858-2874. doi: 10.1002/ar.25396. Epub 2024 Feb 4.

Abstract

We examined the ultrastructure of the mammalian os penis at the high-resolution synchrotron level. Previously, bacular microanatomy had only been investigated histologically. We studied the baculum of the harp seal (Pagophilus groenlandicus), in which the baculum varies more in size and shape than does a mechanically constrained bone (humerus). We (1) investigated the microarchitecture of bacula and humeri from the same seal specimens, and (2) described changes in bone micro- and macro-morphology associated with age (n = 15, age range = 1-35 years) and bone type. We analyzed cross-sectional geometry non-destructively through laboratory micro-computed tomography. We suggest that the midshaft may resist axial compression while the proximal region may resist torsion, based on measurements of cross-sectional and cortical areas, perimeter, ratio of maximum and minimum moments of inertia, and polar moment of inertia. In addition, midshaft bacula may be less mechanosensitive than humeri, based on microstructural variables (e.g., volume, surface area, diameter associated with lacunae and cortical porosity) analyzed across age groupings. Our findings related to the microarchitecture of the pinniped baculum provide a basis for further studies on development, mechanical properties, functions, and adaptations in this and other pinniped species. Our use of a multi-modal imaging approach was minimally destructive for reproducible and accurate comparison of three-dimensional bone ultrastructure. Such methods, coupled with multidisciplinary analyses, enable diverse studies of bone biology, life history, and evolution using museum collections.

摘要

我们在高分辨率同步加速器水平上检查了哺乳动物 os penis 的超微结构。以前,只有通过组织学研究来研究 baculum 的微观解剖结构。我们研究了格陵兰 harp seal(Pagophilus groenlandicus)的 baculum,其 baculum 的大小和形状变化比机械受限的骨头(肱骨)更大。我们 (1) 研究了来自同一海豹标本的 bacula 和 humeri 的微观结构,(2) 描述了与年龄(n = 15,年龄范围为 1-35 岁)和骨类型相关的骨微观和宏观形态变化。我们通过实验室微计算机断层扫描对横截面几何形状进行了非破坏性分析。我们根据横截面和皮质区域、周长、最大和最小惯性矩比以及极惯性矩的测量值,建议中轴可能抵抗轴向压缩,而近端区域可能抵抗扭转。此外,基于跨年龄组分析的微观结构变量(例如,体积、表面积、与腔隙和皮质孔隙率相关的直径),中轴 bacula 可能比 humeri 对机械刺激的敏感性更低。我们关于鳍足类 baculum 微观结构的研究结果为进一步研究该类和其他鳍足类动物的发育、机械性能、功能和适应提供了基础。我们使用多模态成像方法对三维骨超微结构进行了可重复且准确的比较,破坏性最小。这种方法与多学科分析相结合,使我们能够使用博物馆藏品进行骨骼生物学、生活史和进化的多样化研究。

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