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基于 P45 截面塑化标本的人近端胫骨松质骨结构。

Architecture of the cancellous bone in human proximal tibia based on P45 sectional plastinated specimens.

机构信息

Department of Anatomy, College of Basic Medicine, Dalian Medical University, Dalian, 116044, Liaoning, China.

Department of Radiology, The No. 967 Hospital of PLA Joint Logistics Support Force, Dalian, 116021, China.

出版信息

Surg Radiol Anat. 2021 Dec;43(12):2055-2069. doi: 10.1007/s00276-021-02826-2. Epub 2021 Oct 12.

DOI:10.1007/s00276-021-02826-2
PMID:34642771
Abstract

PURPOSE

To reveal differences in the pattern of trabecular architecture in the epiphysis and metaphysis of the proximal tibia.

METHODS

The trabecular architecture of the proximal tibia was observed in 27 P45 plastinated knee specimens.

RESULTS

In the medial and lateral condyles, under the articular cartilage surrounded by the medial or lateral meniscus, the cancellous bone is formed by thick and dense trabecular bands, which run longitudinally in the epiphysis and then pass through the epiphyseal line to terminate on the slanted cortex of the metaphysis. In the intercondylar eminence, the trabeculae are arranged basically in a network. In the central portion of the tibial metaphysis, cancellous bone consists of fine arcuate trabeculae, which extend to the anterior and posterior cortices, respectively. These trabeculae are intersected sparsely and form trusses over the medullary cavity. Near the areas of attachment of the iliotibial tract, tibial collateral ligament, anterior and posterior cruciate ligaments, and patellar ligament, the cancellous bone is locally reinforced with patchy trabeculae, dense radiating trabeculae, or two orthotropic trabecular bands.

CONCLUSION

This study provides further accurate anatomical information on the trabeculae of the proximal tibia. The soft structures of knee joint, including the articular cartilage, menisci, and ligaments, and the slanted cortices of the metaphysis are important landmarks for the location of different arrangements of the cancellous architecture. The present results are beneficial for clinical diagnosis and treatment of pathologies of the knee joint, or the establishment of a finite element analysis model of the knee joint.

摘要

目的

揭示胫骨近端骺端和骨干小梁结构模式的差异。

方法

观察了 27 个 P45 塑化膝关节标本的胫骨近端小梁结构。

结果

在内外侧髁,在由内侧或外侧半月板环绕的关节软骨下,松质骨由厚而密的小梁带组成,这些小梁带在骺端纵向延伸,然后穿过骺线终止于骨干斜面皮质。在髁间隆起处,小梁基本上呈网状排列。在胫骨骨干的中央部分,松质骨由细弧形小梁组成,分别延伸至前侧和后侧皮质。这些小梁稀疏地交叉,在髓腔内形成桁架。在髂胫束、胫侧副韧带、前交叉韧带和后交叉韧带以及髌韧带附着区附近,松质骨局部用斑片状小梁、密集辐射状小梁或两个正交小梁带加固。

结论

本研究为胫骨近端小梁提供了进一步的准确解剖学信息。膝关节的软组织结构,包括关节软骨、半月板和韧带,以及骨干的斜面皮质,是不同排列的松质骨结构的重要标志。本研究结果有助于膝关节疾病的临床诊断和治疗,或建立膝关节有限元分析模型。

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2
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J Orthop Trauma. 2019 Dec;33(12):642-648. doi: 10.1097/BOT.0000000000001591.
3
Concurrent Assessment of Cartilage Morphology and Bone Microarchitecture in the Human Knee Using Contrast-Enhanced HR-pQCT Imaging.
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J Clin Densitom. 2019 Jan-Mar;22(1):74-85. doi: 10.1016/j.jocd.2018.07.002. Epub 2018 Jul 19.
4
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5
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6
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7
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