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The reproducibility of measurements using a standardization phantom for the evaluation of fractional anisotropy (FA) derived from diffusion tensor imaging (DTI)

机译:使用标准化幻像进行测量的再现性,用于评估来自扩散张量成像(DTI)的分数各向异性(FA)

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摘要

Objectives It is necessary to standardize the examination procedure and diagnostic criteria of diffusion tensor imaging (DTI). Thus, the purpose of this study was to examine the reproducibility of measurements using a standardization phantom composed of different fibre materials with different fibre densities (FDs) for the evaluation of fractional anisotropy (FA) derived from DTI. Materials and methods Two types of fibre materials wrapped in heat-shrinkable tubes were used as fibre phantoms. We designed fibre phantoms with three different FDs of each fibre material. The standardization phantom was examined using DTI protocol six times a day, and each examination session was repeated once a month for 7 consecutive months. Fibre tracking was performed by setting regions of interest in the FA map, and FA was measured in each fibre phantom. Coefficients of variation (CVs) were used to evaluate the inter-examination reproducibility of FA values. Furthermore, Bland-Altman plots were used to evaluate the intra-operator reproducibility of FA measurements. Results All CVs for each fibre phantom were within 2% throughout the 7-month study of repeated DTI sessions. The high intra-operator reproducibility of the FA measurement was confirmed. Discussion High reproducibility of measurements using a standardization phantom for the evaluation of FA was achieved.
机译:目的规范弥散张量成像(DTI)的检查程序和诊断标准。因此,本研究的目的是使用由不同纤维密度(FDs)的不同纤维材料组成的标准化体模来评估DTI得出的分数各向异性(FA),检查测量的再现性。材料与方法采用热收缩管包裹的两种纤维材料作为纤维模型。我们用每种纤维材料的三种不同FD设计了纤维模型。标准化模型每天使用DTI方案检查六次,每个检查周期每月重复一次,连续7个月。通过在FA图中设置感兴趣的区域来进行纤维追踪,并在每个纤维模型中测量FA。变异系数(CVs)用于评估FA值的检查间再现性。此外,使用Bland Altman图来评估FA测量的操作员内部再现性。结果在为期7个月的重复DTI研究中,每个纤维模型的CV均在2%以内。证实了FA测量的高操作员内再现性。讨论:使用标准化模型对FA进行评估,获得了较高的测量再现性。

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  • 作者单位

    Department of Health Sciences Graduate School of Medical Sciences Kyushu University 3-1-1 Maidashi Higashi-ku Fukuoka 812-8582 Japan;

    Department of Health Sciences Graduate School of Medical Sciences Kyushu University 3-1-1 Maidashi Higashi-ku Fukuoka 812-8582 Japan;

    Division of Radiology Department of Medical Technology Kyushu University Hospital 3-1-1 Maidashi Higashi-ku Fukuoka 812-8582 Japan;

    Division of Radiology Department of Medical Technology Kyushu University Hospital 3-1-1 Maidashi Higashi-ku Fukuoka 812-8582 Japan;

    Division of Radiology Department of Medical Technology Kyushu University Hospital 3-1-1 Maidashi Higashi-ku Fukuoka 812-8582 Japan;

    Department of Health Sciences Graduate School of Medical Sciences Kyushu University 3-1-1 Maidashi Higashi-ku Fukuoka 812-8582 Japan;

    Department of Health Sciences Graduate School of Medical Sciences Kyushu University 3-1-1 Maidashi Higashi-ku Fukuoka 812-8582 Japan;

    Department of Clinical Radiology Graduate School of Medical Sciences Kyushu University 3-1-1 Maidashi Higashi-ku Fukuoka 812-8582 Japan;

    Department of Clinical Radiology Graduate School of Medical Sciences Kyushu University 3-1-1 Maidashi Higashi-ku Fukuoka 812-8582 Japan;

    Department of Clinical Radiology Graduate School of Medical Sciences Kyushu University 3-1-1 Maidashi Higashi-ku Fukuoka 812-8582 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 磁化学分析法;
  • 关键词

    Magnetic resonance imaging; Diffusion tensor imaging; Standardization; Anisotropy; Quantitative evaluation;

    机译:磁共振成像;扩散张量成像;标准化;各向异性;定量评估;

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