首页> 外文期刊>Journal of bone and mineral metabolism >Dual-energy X-ray absorptiometry, peripheral quantitative computed tomography, and micro-computed tomography techniques are discordant for bone density and geometry measurements in the guinea pig
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Dual-energy X-ray absorptiometry, peripheral quantitative computed tomography, and micro-computed tomography techniques are discordant for bone density and geometry measurements in the guinea pig

机译:双能X线骨密度仪,外周定量计算机断层扫描和微计算机断层扫描技术在豚鼠的骨密度和几何形状测量方面并不协调

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This study aims to examine agreement among bone mineral content (BMC) and density (BMD) estimates obtained using dual-energy X-ray absorptiometry (DXA), peripheral quantitative computed tomography (pQCT), and micro-computed tomography (mu CT) against high-resolution mu CT and bone ash of the guinea pig femur. Middle-aged (n = 40, 86 weeks) male guinea pigs underwent in vivo followed by ex vivo DXA (Hologic QDR 4500A) scanning for intact and excised femur BMC and areal density. To assess bone architecture and strength, excised femurs were scanned on pQCT (Stratec XCT 2000L) as well as on two mu CT scanners (LaTheta LCT-200; Skyscan 1174), followed by three-point bending test. Reproducibility was determined using triplicate scans; and agreement assessed using Bland-Altman plots with reference methods being high-resolution mu CT (Skyscan) for BMD and bone ashing for BMC. All techniques showed satisfactory ex vivo precision (CV 0.05-4.3 %). However, bias compared to the reference method was highest (207.5 %) in trabecular bone volume fraction (BV/TV) measured by LaTheta, and unacceptable in most total femur and cortical bone measurements. Volumetric BMD (vBMD) and BV/TV derived by LaTheta and pQCT at the distal metaphysis were biased from the Skyscan by an average of 49.3 and 207.5 %, respectively. Variability of vBMD, BV/TV and cross-sectional area at the diaphysis ranged from -5.5 to 30.8 %. LaTheta best quantified total femur BMC with an upper bias of 3.3 %. The observed differences among imaging techniques can be attributable to inherent dissimilarity in construction design, calibration, segmentation and scanning resolution used. These bone imaging tools are precise but are not comparable, at least when assessing guinea pig bones.
机译:这项研究旨在检查使用双能X线骨密度仪(DXA),外周定量计算机断层扫描(pQCT)和微计算机断层扫描(mu CT)获得的骨矿物质含量(BMC)和密度(BMD)估计值之间的一致性豚鼠股骨的高分辨率mu CT和骨灰。对中年(n = 40、86周)雄性豚鼠进行体内检查,然后进行离体DXA(Hologic QDR 4500A)扫描,以检查完整和切除的股骨BMC和面密度。为了评估骨骼的结构和强度,在pQCT(Stratec XCT 2000L)和两台mu CT扫描仪(LaTheta LCT-200; Skyscan 1174)上扫描切除的股骨,然后进行三点弯曲测试。使用三次扫描确定可重复性;使用Bland-Altman绘图评估的一致性和参考方法是BMD的高分辨率mu CT(Skyscan)和BMC的骨灰化。所有技术均显示令人满意的离体精确度(CV 0.05-4.3%)。然而,与参考方法相比,用LaTheta测量的小梁骨体积分数(BV / TV)最高(207.5%),在大多数股骨和皮质骨总测量中是不可接受的。由LaTheta和pQCT在远端干physi端处获得的BMD(vBMD)和BV / TV的偏差分别来自Skyscan,分别平均为49.3%和207.5%。 vBMD,BV / TV和骨干处的截面积的变化范围为-5.5至30.8%。 LaTheta最好地量化了总股骨BM​​C,其上偏差为3.3%。在成像技术之间观察到的差异可以归因于构造设计,校准,分割和使用的扫描分辨率方面的固有差异。这些骨成像工具是精确的,但至少在评估豚鼠骨时不可比。

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