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骨组织形态计量学分析的鼠类骨骼microCT 评估指南

Guidelines for assessment of bone microstructure in rodents using micro-computed tomography.

机构信息

Center for Advanced Orthopedic Studies, Beth Israel Deaconess Medical Center and Harvard Medical School, Boston, MA 02215, USA.

出版信息

J Bone Miner Res. 2010 Jul;25(7):1468-86. doi: 10.1002/jbmr.141.

Abstract

Use of high-resolution micro-computed tomography (microCT) imaging to assess trabecular and cortical bone morphology has grown immensely. There are several commercially available microCT systems, each with different approaches to image acquisition, evaluation, and reporting of outcomes. This lack of consistency makes it difficult to interpret reported results and to compare findings across different studies. This article addresses this critical need for standardized terminology and consistent reporting of parameters related to image acquisition and analysis, and key outcome assessments, particularly with respect to ex vivo analysis of rodent specimens. Thus the guidelines herein provide recommendations regarding (1) standardized terminology and units, (2) information to be included in describing the methods for a given experiment, and (3) a minimal set of outcome variables that should be reported. Whereas the specific research objective will determine the experimental design, these guidelines are intended to ensure accurate and consistent reporting of microCT-derived bone morphometry and density measurements. In particular, the methods section for papers that present microCT-based outcomes must include details of the following scan aspects: (1) image acquisition, including the scanning medium, X-ray tube potential, and voxel size, as well as clear descriptions of the size and location of the volume of interest and the method used to delineate trabecular and cortical bone regions, and (2) image processing, including the algorithms used for image filtration and the approach used for image segmentation. Morphometric analyses should be based on 3D algorithms that do not rely on assumptions about the underlying structure whenever possible. When reporting microCT results, the minimal set of variables that should be used to describe trabecular bone morphometry includes bone volume fraction and trabecular number, thickness, and separation. The minimal set of variables that should be used to describe cortical bone morphometry includes total cross-sectional area, cortical bone area, cortical bone area fraction, and cortical thickness. Other variables also may be appropriate depending on the research question and technical quality of the scan. Standard nomenclature, outlined in this article, should be followed for reporting of results.

摘要

使用高分辨率微计算机断层扫描(microCT)成像来评估小梁和皮质骨形态已经有了很大的发展。有几种市售的 microCT 系统,每个系统在图像采集、评估和结果报告方面都有不同的方法。这种缺乏一致性使得解释报告结果和比较不同研究的结果变得困难。本文针对与图像采集和分析以及关键结果评估相关的参数的标准化术语和一致报告提出了这一关键需求,特别是针对啮齿动物标本的离体分析。因此,本文提供了有关(1)标准化术语和单位,(2)描述特定实验方法时应包含的信息,以及(3)应报告的最小一组结果变量的建议。虽然特定的研究目标将决定实验设计,但这些指南旨在确保准确和一致地报告 microCT 衍生的骨形态计量学和密度测量结果。特别是,提出基于 microCT 的结果的论文的方法部分必须包括以下扫描方面的详细信息:(1)图像采集,包括扫描介质、X 射线管电位和体素大小,以及感兴趣区域的大小和位置的清晰描述以及用于描绘小梁和皮质骨区域的方法,以及(2)图像处理,包括用于图像滤波的算法和用于图像分割的方法。形态计量分析应尽可能基于不依赖于基础结构假设的 3D 算法。在报告 microCT 结果时,用于描述小梁骨形态计量学的最小变量集应包括骨体积分数和小梁数量、厚度和分离。用于描述皮质骨形态计量学的最小变量集应包括总横截面积、皮质骨面积、皮质骨面积分数和皮质厚度。其他变量也可能根据研究问题和扫描的技术质量而适当。应遵循本文中概述的标准命名法来报告结果。

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