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肱骨头内松质骨的骨矿物质密度、力学性能和小梁方向受晚期肩关节病的影响。

Bone mineral density, mechanical properties, and trabecular orientation of cancellous bone within humeral heads affected by advanced shoulder arthropathy.

机构信息

Department of Orthopaedics and Traumatology, Kantonsspital St. Gallen, St. Gallen, Switzerland.

Center for X-ray Analytics, Empa, Swiss Federal Laboratories for Materials Science and Technology, St. Gallen, Switzerland.

出版信息

J Orthop Res. 2020 Sep;38(9):1914-1919. doi: 10.1002/jor.24633. Epub 2020 Mar 8.

Abstract

The mechanical properties of cancellous bone in the humeral head are increasingly interesting due to the increased popularity of stemless prosthetic fixation in the cancellous bone of the metaphysis. Age or pathology-related systemic osteoporosis, inactivity, or pathology of the shoulder joint may influence the primary bonding of implants that rely on good cancellous bone quality. We assessed the bone mineral density (BMD) and anisotropy using micro-computed tomography (micro-CT) (0.04 mm voxel size) and correlated the results with indentation load/displacement response. Resected parts of humeral heads (from patients undergoing total shoulder replacement, n = 18) were used as probes. The region of interest was defined as 2 mm medial from the resection plane, presuming that it mirrored the bone quality lateral to the resection plane. The indentation tests were performed with a large probe (diameter 10 mm) in a single destructive loading procedure. The BMD and trabecular orientation were determined by micro-CT. Our results showed a correlation between the BMD and the slope of the load/displacement curve. Furthermore, the trabeculae were predominantly oriented orthogonal to the joint surface. In conclusion, the predominant factor determining the bone quality and mechanical resistance to pressure appears to be the BMD, while trabecular orientation could not be related to load/displacement response. Statement of clinical significance: Bone quality predominately determines the mechanical properties of cancellous bone. This might be crucial when prosthetic implants need to be anchored in metaphyseal bone. Therefore, clinical decision-making processes should also include local BMD measurements.

摘要

由于非骨水泥柄假体在干骺端松质骨中的固定越来越受欢迎,肱骨头松质骨的力学性能变得越来越有趣。年龄或与病理相关的系统性骨质疏松症、不活动或肩关节病理可能会影响依赖于良好的松质骨质量的植入物的初始固定。我们使用微计算机断层扫描(micro-CT)(0.04 mm 体素大小)评估骨矿物质密度(BMD)和各向异性,并将结果与压痕载荷/位移响应相关联。使用肱骨头的切除部分(来自接受全肩关节置换的患者,n = 18)作为探针。感兴趣区域定义为距切除平面内侧 2 mm,假设它反映了切除平面外侧的骨质量。使用大探针(直径 10 mm)在单个破坏性加载过程中进行压痕测试。通过 micro-CT 确定 BMD 和小梁方向。我们的结果表明 BMD 与载荷/位移曲线的斜率之间存在相关性。此外,小梁主要垂直于关节面定向。总之,决定骨质量和抗压机械阻力的主要因素似乎是 BMD,而小梁方向与载荷/位移响应无关。临床意义的陈述:骨质量主要决定松质骨的力学性能。当需要将假体植入物固定在干骺端骨时,这可能至关重要。因此,临床决策过程还应包括局部 BMD 测量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f7e/7496343/6a719f3db7d6/JOR-38-1914-g001.jpg

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