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首页> 外文期刊>Bone >Development and optimization of a high-throughput micro-computed tomography imaging method incorporating a novel analysis technique to evaluate bone mineral density of arthritic joints in a rodent model of collagen induced arthritis
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Development and optimization of a high-throughput micro-computed tomography imaging method incorporating a novel analysis technique to evaluate bone mineral density of arthritic joints in a rodent model of collagen induced arthritis

机译:一种新型分析技术的高通量微型计算机断层摄影成像方法的开发与优化,评价胶原诱导性关节炎啮齿体模型中关节炎关节骨密度的骨密度

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Rheumatoid arthritis (RA) is a chronic autoimmune disease resulting in joint inflammation, pain, and eventual bone loss. Bone loss and remodeling caused by symmetric polyarthritis, the hallmark of RA, is readily detectable by bone mineral density (BMD) measurement using micro-CF. Abnormalities in these measurements over time reflect the underlying pathophysiology of the bone. To evaluate the efficacy of anti-rheumatic agents in animal models of arthritis, we developed a high throughput knee and ankle joint imaging assay to measure BMD as a translational biomarker. A bone sample holder was custom designed for micro-CF scanning, which significantly increased assay throughput. Batch processing 3-dimensional image reconstruction, followed by automated image cropping, significantly reduced image processing time. In addition, we developed a novel, automated image analysis method to measure BMD and bone volume of knee and ankle joints. These improvements significantly increased the throughput of ex vivo bone sample analysis, reducing data turnaround from 5 days to 24 hours for a study with 200 rat hind limbs. Taken together, our data demonstrate that BMD, as quantified by micro-CT, is a robust efficacy biomarker with a high degree of sensitivity. Our innovative approach toward evaluation of BMD using optimized image acquisition and novel image processing techniques in predinical models of RA enables high throughput assessment of anti-rheumatic agents offering a powerful tool for drug discovery. (C) 2014 The Authors. Published by Elsevier Inc.
机译:类风湿性关节炎(RA)是一种慢性自身免疫疾病,导致关节炎症,疼痛和最终的骨质损失。由对称多关节炎引起的骨质损失和重塑,Ra的标志,通过使用微型CF的骨矿物密度(BMD)测量易于检测。随着时间的推移,这些测量中的异常反映了骨的底层病理生理学。为了评估抗风湿剂在关节炎的动物模型中的功效,我们开发了一种高通量膝盖和踝关节成像测定,以测量BMD作为平移生物标志物。骨样架是针对微型CF扫描设计的定制,显着增加了测定产量。批处理三维图像重建,其次是自动图像裁剪,显着降低图像处理时间。此外,我们开发了一种新颖的自动图像分析方法,用于测量膝关节和踝关节的BMD和骨骼体积。这些改进显着提高了exvivo骨骼样品分析的吞吐量,从200只大鼠后肢的研究中减少了5天至24小时的数据周转。我们的数据一起表明,通过微型CT量化的BMD是一种强大的效力生物标志物,具有高灵敏度。我们使用优化的图像采集和新颖的RA中的新型图像处理技术评估BMD的创新方法使得对抗风湿剂的高通量评估提供了一种用于药物发现的强大工具。 (c)2014年作者。 elsevier公司发布

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