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首页> 外文期刊>Osteoporosis international: a journal established as result of cooperation between the European Foundation for Osteoporosis and the National Osteoporosis Foundation of the USA >Assessment of trabecular and cortical architecture and mechanical competence of bone by high-resolution peripheral computed tomography: comparison with transiliac bone biopsy.
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Assessment of trabecular and cortical architecture and mechanical competence of bone by high-resolution peripheral computed tomography: comparison with transiliac bone biopsy.

机译:高分辨率外周计算机体层摄影术评估小梁和皮质结构以及骨骼的机械能力:与经trans骨活检的比较。

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We compared microarchitecture and mechanical competence parameters measured by high-resolution peripheral quantitative computed tomography (HR-pQCT) and finite-element analysis of radius and tibia to those measured by histomorphometry, micro-CT, and finite-element analysis of transiliac bone biopsies. Correlations were weak to moderate between parameters measured on biopsies and scans. INTRODUCTION: HR-pQCT is a new imaging technique that assesses trabecular and cortical bone microarchitecture of the radius and tibia in vivo. The purpose of this study was to determine the extent to which microarchitectural variables measured by HR-pQCT reflect those measured by the gold standard, Scanco Medical AG) and iliac crest bone biopsies were performed in 54 subjects (aged 39 +/- 10 years). Biopsies were analyzed by 2D quantitative histomorphometry and 3D microcomputed tomography (microCT). Apparent Young's modulus, an estimate of mechanical competence or strength, was determined by micro-finite-element analysis (microFE) of biopsy microCT and HR-pQCT images. RESULTS: The strongest correlations observed were between trabecular parameters (bone volume fraction, number, separation) measured by microCT of biopsies and HR-pQCT of the radius (R 0.365-0.522; P < 0.01). Cortical width of biopsies correlated with cortical thickness by HR-pQCT, but only at the tibia (R = 0.360, P < 0.01). Apparent Young's modulus calculated by microFE of biopsies correlated with that calculated for both radius (R = 0.442; P < 0.001) and tibia (R = 0.380; P < 0.001) HR-pQCT scans. CONCLUSIONS: The associations between peripheral (HR-pQCT) and axial (transiliac biopsy) measures of microarchitecture and estimated mechanical competence are significant but modest.
机译:我们比较了通过高分辨率外围定量计算机断层扫描(HR-pQCT)和radius骨和胫骨的有限元分析所测量的微结构和机械能力参数,以及通过组织形态学,micro-CT和经trans骨活检的有限元分析所测量的参数。在活检和扫描测量的参数之间,相关性弱到中等。简介:HR-pQCT是一种新的成像技术,可评估体内the骨和胫骨的小梁和皮质骨微结构。这项研究的目的是确定在HR-pQCT测量的微体系结构变量反映金标准,Scanco Medical AG测量的微体系结构变量的程度以及对54位受试者(39 +/- 10岁)进行的c骨活检的程度。 。通过2D定量组织形态学和3D微计算机断层扫描(microCT)对活检进行分析。通过活检microCT和HR-pQCT图像的微观有限元分析(microFE)确定表观杨氏模量(机械能力或强度的估计值)。结果:观察到的最强相关性是通过活检显微CT测量的小梁参数(骨体积分数,数量,分离度)与the骨的HR-pQCT之间的相关性(R 0.365-0.522; P <0.01)。活检的皮质宽度与HR-pQCT的皮质厚度相关,但仅在胫骨处(R = 0.360,P <0.01)。通过microFE活检显示的表观杨氏模量与半径(R = 0.442; P <0.001)和胫骨(R = 0.380; P <0.001)HR-pQCT扫描的模量相关。结论:外围(HR-pQCT)和轴向(经皮穿刺活检)的微体系结构和估计的机械能力之间的关联是重要的但适度的。

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