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Three-Dimensional Quantitative Morphometric Analysis (QMA) for In Situ Joint and Tissue Assessment of Osteoarthritis in a Preclinical Rabbit Disease Model

机译:在临床前兔子疾病模型中对骨关节炎进行原位关节和组织评估的三维定量形态分析(QMA)

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摘要

This work utilises advances in multi-tissue imaging, and incorporates new metrics which define in situ joint changes and individual tissue changes in osteoarthritis (OA). The aims are to (1) demonstrate a protocol for processing intact animal joints for microCT to visualise relevant joint, bone and cartilage structures for understanding OA in a preclinical rabbit model, and (2) introduce a comprehensive three-dimensional (3D) quantitative morphometric analysis (QMA), including an assessment of reproducibility. Sixteen rabbit joints with and without transection of the anterior cruciate ligament were scanned with microCT and contrast agents, and processed for histology. Semi-quantitative evaluation was performed on matching two-dimensional (2D) histology and microCT images. Subsequently, 3D QMA was performed; including measures of cartilage, subchondral cortical and epiphyseal bone, and novel tibio-femoral joint metrics. Reproducibility of the QMA was tested on seven additional joints. A significant correlation was observed in cartilage thickness from matching histology-microCT pairs. The lateral compartment of operated joints had larger joint space width, thicker femoral cartilage and reduced bone volume, while osteophytes could be detected quantitatively. Measures between the in situ tibia and femur indicated an altered loading scenario. High measurement reproducibility was observed for all new parameters; with ICC ranging from 0.754 to 0.998. In conclusion, this study provides a novel 3D QMA to quantify macro and micro tissue measures in the joint of a rabbit OA model. New metrics were established consisting of: an angle to quantitatively measure osteophytes (σ), an angle to indicate erosion between the lateral and medial femoral condyles (ρ), a vector defining altered angulation (λ, α, β, γ) and a twist angle (τ) measuring instability and tissue degeneration between the femur and tibia, a length measure of joint space width (JSW), and a slope and intercept (m, Χ) of joint contact to demonstrate altered loading with disease progression, as well as traditional bone and cartilage and histo-morphometry measures. We demonstrate correlation of microCT and histology, sensitive discrimination of OA change and robust reproducibility.
机译:这项工作利用了多组织成像技术的进步,并结合了新的指标,这些指标定义了骨关节炎(OA)的原位关节变化和单个组织变化。目的是(1)演示用于处理MicroCT的完整动物关节的协议,以可视化相关的关节,骨骼和软骨结构,以了解临床前兔模型中的OA,以及(2)引入全面的三维(3D)定量形态计量学分析(QMA),包括可重复性评估。用microCT和造影剂扫描16个有或没有横交叉前交叉韧带的兔关节,并进行组织学处理。对匹配的二维(2D)组织学和microCT图像进行了半定量评估。随后,执行3D QMA;包括软骨,软骨下皮质和骨s的测量,以及新的胫股关节测量。在另外七个关节上测试了QMA的可重复性。从匹配的组织学-microCT对中观察到软骨厚度的显着相关性。手术关节的外侧腔室具有较大的关节间隙宽度,较厚的股骨软骨和减少的骨量,而骨赘可定量检测。原位胫骨和股骨之间的测量表明负荷情况发生了变化。所有新参数均具有很高的测量重现性; ICC介于0.754至0.998之间。总之,这项研究提供了一种新颖的3D QMA来量化兔子OA模型关节中的宏观和微观组织测量。建立了新的指标,包括:用于定量测量骨赘的角度(σ),指示外侧和内侧股骨con之间侵蚀的角度(ρ),定义角度变化的向量(λ,α,β,γ)和扭曲的角度角度(τ)测量股骨和胫骨之间的不稳定性和组织变性,关节间隙宽度(JSW)的长度测量以及关节接触的斜率和截距(m,Χ)以显示随着疾病进展而改变的负荷以及传统的骨骼和软骨及其组织形态测量方法。我们证明了microCT和组织学的相关性,OA变化的敏感区分和强大的可重复性。

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