Microvasculature and trabecular bone in beagle proximal femur: Microstructural insights

IF 1.7 3区 医学 Q2 ANATOMY & MORPHOLOGY Annals of Anatomy-Anatomischer Anzeiger Pub Date : 2025-02-01 Epub Date: 2024-12-04 DOI:10.1016/j.aanat.2024.152368
M Adeel Alam Shah , Wei Tang , Jing-Hui Zhang, Cheng Chen, Jia-Wei Wang, Shu-Jun Lü, Xin-Tong Yu, Zhi-Jun Zhang, Chan Li, Sheng-Bo Yu, Hong-Jin Sui
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Abstract

Background

Avascular necrosis of femoral head and malunion are frequent post-operative complications of femoral neck fractures. To optimize surgical techniques, this study aims to provide a microstructural understanding of intraosseous microvasculature and the trabecular bone of the femoral head and neck.

Study Design

This anatomical study analyzed twenty-eight femora from fourteen cadaveric beagles. Common iliac arteries were infused with colored silicone-resin for vascular visualization, followed by non-decalcified hard tissue processing using the EXAKT®, and Masson's trichrome staining. Morphology and histomorphometric analysis were performed by Nikon NIS Elements BR and ImageJ-fiji.

Results

Histomorphometry revealed thin, elongated trabeculae with high vascularity aligned parallel in the neck; numerous intraosseous anastomoses at the neck-shaft and head-neck junctions; thick trabeculae with smaller marrow cavities, and dense branching vascular networks near the cortex in the head. Quantitative analysis showed an inverse correlation between trabecular density and mean vascular density/vascular length density, with no significant sex or side differences. Dense connective tissue fibers maintained the microvasculature and trabeculae structure.

Conclusion

The femoral neck displayed an outside-in microvascular pattern via retinacular branches. Conversely, the femoral head had an inside-out pattern through epiphyseal branches reinforced by medullary branches. Dense intraosseous microvasculature aligned sub-cortically. The study identified a potential anatomical safe zone for screwing in femoral neck fractures in beagles. These findings provide an anatomical basis for translational research in joint preservation techniques for humans.
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Beagle股骨近端微血管和骨小梁:显微结构观察。
背景:股骨头缺血性坏死和骨不愈合是股骨颈骨折术后常见的并发症。为了优化手术技术,本研究旨在提供骨内微血管和股骨头及颈部小梁骨的微观结构理解。研究设计:本解剖研究分析了14只小猎犬尸体的28根股骨。髂总动脉灌注彩色硅树脂以显示血管,随后使用EXAKT®进行非脱钙硬组织处理,并进行Masson三色染色。用Nikon NIS Elements BR和imagj -fiji进行形态学和组织形态计量学分析。结果:组织形态测量显示颈部有细而细长的高血管小梁平行排列;颈轴和头颈连接处有大量骨内吻合;厚的小梁,有较小的骨髓腔,在头部皮层附近有密集的分支血管网。定量分析显示,小梁密度与平均血管密度/血管长度密度呈负相关,无显著的性别或侧方差异。致密的结缔组织纤维维持了微血管和小梁结构。结论:股骨颈经支持带分支呈由外向内微血管分布。相反,股骨头有一个由内到外的模式,通过骨骺分支,由髓分支加强。密集的骨内微血管排列在皮质下。该研究确定了比格犬股骨颈骨折螺钉固定的潜在解剖安全区域。这些发现为人类关节保存技术的转化研究提供了解剖学基础。
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来源期刊
Annals of Anatomy-Anatomischer Anzeiger
Annals of Anatomy-Anatomischer Anzeiger 医学-解剖学与形态学
CiteScore
4.40
自引率
22.70%
发文量
137
审稿时长
33 days
期刊介绍: Annals of Anatomy publish peer reviewed original articles as well as brief review articles. The journal is open to original papers covering a link between anatomy and areas such as •molecular biology, •cell biology •reproductive biology •immunobiology •developmental biology, neurobiology •embryology as well as •neuroanatomy •neuroimmunology •clinical anatomy •comparative anatomy •modern imaging techniques •evolution, and especially also •aging
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