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The micro-architecture of human cancellous bone from fracture neck of femur patients in relation to the structural integrity and fracture toughness of the tissue

机译:股骨患者骨折颈部人松质骨的微结构与组织结构完整性和骨折韧性的关系

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摘要

Osteoporosis is clinically assessed from bone mineral density measurements using dual energy X-ray absorption (DXA). However, these measurements do not always provide an accurate fracture prediction, arguably because DXA does not grapple with ‘bone quality’, which is a combined result of microarchitecture, texture, bone tissue properties, past loading history, material chemistry and bone physiology in reaction to disease. Studies addressing bone quality are comparatively few if one considers the potential importance of this factor. They suffer due to low number of human osteoporotic specimens, use of animal proxies and/or the lack of differentiation between confounding parameters such as gender and state of diseased bone. The present study considers bone samples donated from patients (n = 37) who suffered a femoral neck fracture and in this very well defined cohort we have produced in previous work fracture toughness measurements (FT) which quantify its ability to resist crack growth which reflects directly the structural integrity of the cancellous bone tissue. We investigated correlations between BV/TV and other microarchitectural parameters; we examined effects that may suggest differences in bone remodelling between males and females and compared the relationships with the FT properties. The data crucially has shown that TbTh, TbSp, SMI and TbN may provide a proxy or surrogate for BV/TV. Correlations between FT critical stress intensity values and microarchitecture parameters (BV/TV, BS/TV, TbN, BS/BV and SMI) for osteoporotic cancellous tissue were observed and are for the first time reported in this study. Overall, this study has not only highlighted that the fracture model based upon BMD could potentially be improved with inclusion of other microarchitecture parameters, but has also given us clear clues as to which of them are more influential in this role.
机译:骨质疏松症是通过使用双能X射线吸收(DXA)从骨矿物质密度测量中进行临床评估的。但是,这些测量值并不总是能够提供准确的骨折预测,这可能是因为DXA不能解决“骨骼质量”问题,而骨骼质量是微观结构,质地,骨骼组织特性,既往负荷史,材料化学和骨骼生理反应的综合结果去疾病。如果人们考虑到这一因素的潜在重要性,那么有关骨骼质量的研究就很少。由于人类骨质疏松标本数量少,使用动物代理和/或混杂参数(如性别和患病骨状态)之间缺乏区分,它们遭受痛苦。本研究考虑了从患有股骨颈骨折的患者(n = 37)捐赠的骨样品,在我们之前的工作中所定义的非常明确的队列中,骨折韧性测量(FT)量化了其抵抗裂纹扩展的能力,该能力直接反映了松质骨组织的结构完整性。我们研究了BV / TV与其他微体系结构参数之间的相关性;我们检查了可能暗示男性和女性之间骨骼重塑差异的效应,并将其与FT特性的关系进行了比较。至关重要的数据表明,TbTh,TbSp,SMI和TbN可以为BV / TV提供代理或替代。观察到了骨质疏松松质组织的FT临界应力强度值与微体系结构参数(BV / TV,BS / TV,TbN,BS / BV和SMI)之间的相关性,这是本研究首次报道。总的来说,这项研究不仅强调了通过包含其他微体系结构参数可以潜在地改善基于BMD的断裂模型,而且还为我们提供了明确线索,表明其中哪些对这一作用的影响更大。

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