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Osteolytica: An automated image analysis software package that rapidly measures cancer-induced osteolytic lesions in in vivo models with greater reproducibility compared to other commonly used methods

机译:osteolytica:与其他常用方法相比,自动图像分析软件包快速测量癌症诱导的癌症诱导的骨溶解病变,其具有更高的再现性

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摘要

Methods currently used to analyse osteolytic lesions caused by malignancies such as multiple myeloma and metastatic breast cancer vary from basic 2-D X-ray analysis to 2-D images of micro-CT datasets analysed with non-specialised image software such as ImageJ. However, these methods have significant limitations. They do not capture 3-D data, they are time-consuming and they often suffer from inter-user variability. We therefore sought to develop a rapid and reproducible method to analyse 3-D osteolytic lesions in mice with cancer induced bone disease. To this end, we have developed Osteolytica, an image analysis software method featuring an easy to use, step-by-step interface to measure lytic bone lesions. Osteolytica utilises novel graphics card acceleration (parallel computing) and 3-D rendering to provide rapid reconstruction and analysis of osteolytic lesions. To evaluate the use of Osteolytica we analysed tibial micro-CT datasets from murine models of cancer-induced bone disease and compared the results to those obtained using a standard ImageJ analysis method. Firstly, to assess inter-user variability we deployed four independent researchers to analyse tibial datasets from the U266-NSG murine model of myeloma. Using ImageJ, inter-user variability between the bones was substantial (+/- 19.6%), in contrast to using Osteolytica, which demonstrated minimal variability (+/- 0.5%). Secondly, tibial datasets from U266-bearing NSG mice or BALB/c mice injected with the metastatic breast cancer cell line 4T1 were compared to tibial datasets from aged and sex-matched non-tumour control mice. Analyses by both Osteolytica and ImageJ showed significant increases in bone lesion area in tumour-bearing mice compared to control mice. These results confirm that Osteolytica performs as well as the current 2-D ImageJ osteolytic lesion analysis method. However, Osteolytica is advantageous in that it analyses over the entirety of the bone volume (as opposed to selected 2-D images), it is a more rapid method and it has less user variability. (c) 2015 The Authors. Published by Elsevier Inc.
机译:目前用于分析多种骨髓瘤和转移乳腺癌等恶性肿瘤引起的骨溶解损伤的方法因基本的2-D X射线分析而不同于用非专业图像软件(如ImageJ)分析的微型CT数据集的2-D图像。但是,这些方法具有显着的限制。它们不捕获3-D数据,它们是耗时的,并且它们经常遭受用户间可变性。因此,我们寻求开发一种快速和可重复的方法来分析癌症诱导骨病小鼠中的3-D骨溶解病变。为此,我们已经开发出骨果实,一种图像分析软件方法,具有易于使用的逐步界面来测量裂性骨病。 OsteolyTICA利用新颖的显卡加速度(平行计算)和3-D渲染,以提供快速的重建和分析骨解性病变。为了评估骨质醇溶解的使用,我们分析了从癌症诱导的骨病的鼠模型分析了胫骨微型CT数据集,并将结果与​​使用标准ImageJ分析方法获得的结果进行了比较。首先,为了评估用户间可变性,我们部署了四个独立的研究人员,以分析来自骨髓瘤的U266-NSG小鼠模型的胫骨数据集。使用ImageJ,骨骼之间的用户间变异性是大量的(+/- 19.6%),与使用骨果溶胶相比,这表现出最小的变异性(+/- 0.5%)。其次,与来自老年人和性别匹配的非肿瘤对照小鼠的胫骨数据集进行比较来自U266承载NSG小鼠或BALB / C小鼠的胫骨数据集。与对照小鼠相比,骨溶胶和ImageJ的分析显示肿瘤小鼠中的骨病变面积显着增加。这些结果证实,骨溶胶表演以及电流的2-D ImageJ骨解病变分析方法。然而,Osteolytica有利的是,它在整个骨体积(与所选的2-D图像相对)上分析,它是一种更快速的方法,并且具有较少的用户变异性。 (c)2015年作者。 elsevier公司发布

著录项

  • 来源
    《Bone》 |2016年第null期|共8页
  • 作者单位

    Univ Sheffield Sch Med Sheffield Myeloma Res Team Dept Oncol Beech Hill Rd Sheffield S10 2RX;

    Univ Sheffield Dept Comp Sci Mappin St Sheffield S1 4DP S Yorkshire England;

    Univ Sheffield Sch Med Sheffield Myeloma Res Team Dept Oncol Beech Hill Rd Sheffield S10 2RX;

    Univ Sheffield Sch Med Sheffield Myeloma Res Team Dept Oncol Beech Hill Rd Sheffield S10 2RX;

    Univ Sheffield Sch Med Sheffield Myeloma Res Team Dept Oncol Beech Hill Rd Sheffield S10 2RX;

    Univ Sheffield Sch Med Sheffield Myeloma Res Team Dept Oncol Beech Hill Rd Sheffield S10 2RX;

    Univ Sheffield Sch Med Mellanby Ctr Bone Res Beech Hill Rd Sheffield S10 2RX S Yorkshire;

    Univ Sheffield Dept Comp Sci Mappin St Sheffield S1 4DP S Yorkshire England;

    Univ Sheffield Sch Med Sheffield Myeloma Res Team Dept Oncol Beech Hill Rd Sheffield S10 2RX;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 骨科学(运动系疾病、矫形外科学);
  • 关键词

    Bone; Multiple myeloma; Breast cancer; Lesion; MicroCT;

    机译:骨;多发性骨髓瘤;乳腺癌;病变;microct;

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