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Trabecular Plate Loss and Deteriorating Elastic Modulus of Femoral Trabecular Bone in Intertrochanteric Hip Fractures

机译:股骨转子间髋骨骨折中小梁板丢失和股骨小梁骨弹性模量下降

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摘要

Osteoporotic hip fracture is associated with significant trabecular bone loss, which is typically characterized as low bone density by dual-energy X-ray absorptiometry (DXA) and altered microstructure by micro-computed tomography (μCT). Emerging morphological analysis techniques, e.g. individual trabecula segmentation (ITS), can provide additional insights into changes in plate-like and rod-like trabeculae, two major microstructural types serving different roles in determining bone strength. Using ITS, we evaluated trabecular microstructure of intertrochanteric bone cores obtained from 23 patients undergoing hip replacement surgery for intertrochanteric fracture and 22 cadaveric controls. Micro-finite element (μFE) analyses were performed to further understand how the abnormalities seen by ITS might translate into effects on bone strength. ITS analyses revealed that, near fracture site, plate-like trabeculae were seriously depleted in fracture patients, but trabecular rod volume was maintained. Besides, decreased plate area and rod length were observed in fracture patients. Fracture patients also showed decreased elastic moduli and shear moduli of trabecular bone. These results provided evidence that in intertrochanteric hip fracture, preferential loss of plate-like trabeculae led to more rod-like microstructure and deteriorated mechanical competence adjacent to the fracture site, which increased our understanding of the biomechanical pathogenesis of hip fracture in osteoporosis.
机译:骨质疏松性髋部骨折伴有明显的小梁骨丢失,通常以双能X射线吸收法(DXA)表征为低骨密度,并通过微计算机断层扫描(μCT)改变微观结构。新兴的形态分析技术,例如单个小梁分割(ITS)可以为板状和杆状小梁的变化提供更多的见解,这两种主要的微结构类型在确定骨骼强度方面起着不同的作用。使用ITS,我们评估了从23例行股骨粗隆间骨折的髋关节置换手术患者和22具尸体对照获得的股骨粗隆间骨小梁的微结构。进行了微有限元(μFE)分析,以进一步了解ITS所看到的异常可能如何转化为对骨强度的影响。 ITS分析显示,在骨折患者的骨折部位附近,板状小梁严重耗竭,但仍保持了小梁杆体积。此外,骨折患者的钢板面积和杆长度均减少。骨折患者还显示小梁骨的弹性模量和剪切模量降低。这些结果提供了证据,在转子间髋部骨折中,板状小梁的优先丢失导致更多的杆状微结构和邻近骨折部位的机械能力下降,这加深了我们对骨质疏松症中髋部骨折的生物力学发病机理的了解。

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