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从 Micro-CT 图像评估小鼠胫骨的密度和生物力学的可重复性。

Reproducibility of Densitometric and Biomechanical Assessment of the Mouse Tibia From Micro-CT Images.

机构信息

Department of Oncology and Metabolism, Mellanby Centre for bone Research, University of Sheffield, Sheffield, United Kingdom.

INSIGNEO Institute for In Silico Medicine, University of Sheffield, Sheffield, United Kingdom.

出版信息

Front Endocrinol (Lausanne). 2022 Jun 30;13:915938. doi: 10.3389/fendo.2022.915938. eCollection 2022.

Abstract

Interventions for bone diseases (e.g. osteoporosis) require testing in animal models before clinical translation and the mouse tibia is among the most common tested anatomical sites. micro-Computed Tomography (microCT) based measurements of the geometrical and densitometric properties are non-invasive and therefore constitute an important tool in preclinical studies. Moreover, validated micro-Finite Element (microFE) models can be used for predicting the bone mechanical properties non-invasively. However, considering that the image processing pipeline requires operator-dependant steps, the reproducibility of these measurements has to be assessed. The aim of this study was to evaluate the intra- and inter-operator reproducibility of several bone parameters measured from microCT images. Ten microCT images of the right tibia of five mice (at 18 and 22 weeks of age) were processed. One experienced operator (intra-operator analysis) and three different operators (inter-operator) aligned each image to a reference through a rigid registration and selected a volume of interest below the growth plate. From each image the following parameters were measured: total bone mineral content (BMC) and density (BMD), BMC in 40 subregions (ten longitudinal sections, four quadrants), microFE-based stiffness and failure load. Intra-operator reproducibility was acceptable for all parameters (precision error, PE < 3.71%), with lowest reproducibility for stiffness (3.06% at week 18, 3.71% at week 22). The inter-operator reproducibility was slightly lower (PE < 4.25%), although still acceptable for assessing the properties of most interventions. The lowest reproducibility was found for BMC in the lateral sector at the midshaft (PE = 4.25%). Densitometric parameters were more reproducible than most standard morphometric parameters calculated in the proximal trabecular bone. In conclusion, microCT and microFE models provide reproducible measurements for non-invasive assessment of the mouse tibia properties.

摘要

干预骨骼疾病(例如骨质疏松症)需要在临床转化前在动物模型中进行测试,而小鼠胫骨是最常测试的解剖部位之一。基于微计算机断层扫描(microCT)的几何和密度特性测量是非侵入性的,因此构成了临床前研究中的重要工具。此外,经过验证的微有限元(microFE)模型可用于无创预测骨力学性能。然而,考虑到图像处理流水线需要依赖于操作人员的步骤,这些测量的重现性必须得到评估。本研究旨在评估从 microCT 图像测量的几个骨骼参数的内部和操作人员之间的重现性。对五只小鼠的右胫骨的 10 个 microCT 图像进行了处理(18 周和 22 周龄)。一名经验丰富的操作人员(内部操作人员分析)和三名不同的操作人员(外部操作人员)通过刚性配准将每个图像与参考图像对齐,并在生长板下方选择感兴趣的体积。从每个图像中测量以下参数:总骨矿物质含量(BMC)和密度(BMD),40 个分区的 BMC(十个纵向切片,四个象限),基于 microFE 的刚度和失效负载。对于所有参数,内部操作人员的重现性均可以接受(精度误差,PE < 3.71%),在第 18 周时刚度的重现性最低(3.06%,在第 22 周时为 3.71%)。外部操作人员的重现性略低(PE < 4.25%),尽管仍可接受评估大多数干预措施的效果。在骨干中部的外侧区域中 BMC 的重现性最低(PE = 4.25%)。密度参数比大多数在近侧骨小梁中计算的标准形态计量参数更具重现性。总之,microCT 和 microFE 模型可提供可重复的测量值,用于无创评估小鼠胫骨的特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/46f4/9282377/2ea2f287e8ea/fendo-13-915938-g001.jpg

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