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Reproducibility of bone micro-architecture measurements in rodents by in vivo micro-computed tomography is maximized with three-dimensional image registration.

机译:通过三维显微图像配准,通过体内微计算机断层扫描在啮齿动物中进行骨微结构测量的可重复性达到了最大。

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摘要

In vivo micro-computed tomography (microCT) is a new method to monitor longitudinal changes of bone micro-architecture. Common animal models of bone diseases are mice and rats, and it is important to know the reproducibility of the bone measurements in order to correctly interpret results. When performing baseline and follow-up acquisitions, variation in the scan region will influence the parameters, and it has yet to be investigated if three-dimensional (3D) registration can improve the reproducibility. Two typical breeds of mice and one typical breed of rats were scanned four times each using microCT and standard bone morphological and density measurements were calculated. Image registration was used to find the overlapping regions between the scans within each series of animal data and only overlapping regions were analyzed for the bone parameters. Reproducibility was determined for each animal both pre- and post-registration. For the rats, results included a bone volume ratio (BV/TV) precision error of 5.46%, cortical thickness (Ct.Th) error of 1.97%, and tissue mineral density (TMD) of 2.00%. For the BL6 mice, precision errors were 3.00% (BV/TV), 0.95% (Ct.Th), and 0.94% (TMD), and for the C3H mice 2.68% (BV/TV), 1.52% (Ct.Th), and 1.72% (TMD). After image registration there was a significant improvement in reproducibility in most parameters for the rats. In general, metric parameters such as bone volume ratio had better reproducibility than the non-metric parameters connectivity density and structure model index. With 3D registration, reproducibility improved the results obtained by the experienced operators in this study. Registration may serve to equalize reproducibility of operators with different skill levels and across laboratories. It also improves efficiency by reducing the amount of hand-contouring required. This reproducibility data will be important for the interpretation of current and future longitudinal microCT studies.
机译:体内微计算机断层扫描(microCT)是一种监测骨微结构纵向变化的新方法。骨骼疾病的常见动物模型是小鼠和大鼠,了解骨骼测量值的可重复性以正确解释结果很重要。在执行基线和后续采集时,扫描区域的变化会影响参数,而三维(3D)配准能否提高可重复性尚待研究。使用microCT对两种典型的小鼠和一种典型的大鼠进行了四次扫描,并计算了标准的骨形态和密度测量值。图像配准用于在每组动物数据内的扫描之间找到重叠区域,并且仅分析重叠区域的骨骼参数。在注册前和注册后确定每只动物的可重复性。对于大鼠,结果包括骨体积比(BV / TV)精度误差为5.46%,皮质厚度(Ct.Th)误差为1.97%和组织矿物质密度(TMD)为2.00%。对于BL6小鼠,精确度误差为3.00%(BV / TV),0.95%(Ct.Th)和0.94%(TMD),对于C3H小鼠为2.68%(BV / TV),1.52%(Ct.Th )和1.72%(TMD)。图像配准后,大鼠大多数参数的重现性都有显着改善。通常,与非度量参数的连接密度和结构模型指标相比,度量参数(例如骨体积比)具有更好的可重复性。通过3D配准,可重复性改善了本研究中经验丰富的操作员获得的结果。注册可能有助于均衡具有不同技能水平和跨实验室的操作员的可重复性。它还通过减少所需的手动轮廓量来提高效率。该可重复性数据对于解释当前和未来的纵向microCT研究将非常重要。

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