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基于各向异性鱼线的体模作为扩散张量成像质量控制工具的研究。

Investigation of anisotropic fishing line-based phantom as tool in quality control of diffusion tensor imaging.

作者信息

de Souza Edna Marina, Costa Eduardo Tavares, Castellano Gabriela

机构信息

Biomedical Engineering Center, University of Campinas (UNICAMP), 163 Alexander Fleming St, Cidade Universitária, Campinas, SP, 13083 881, Brazil.

Biomedical Engineering Department, School of Electrical and Computer Engineering, University of Campinas (UNICAMP), Campinas, Brazil.

出版信息

Radiol Phys Technol. 2019 Jun;12(2):161-171. doi: 10.1007/s12194-019-00507-9. Epub 2019 Mar 16.

DOI:10.1007/s12194-019-00507-9
PMID:30877555
Abstract

This work proposes a low-cost, fishing line-based phantom for quality control of diffusion tensor imaging (DTI). The device was applied to investigate the relationship between DTI indexes (DTIi) and imaging acquisition parameters. A Dyneema fishing line phantom was built with fiber bundles of different thicknesses. DTI acquisitions were performed in a 3T magnetic resonance imaging scanner using an 8-channel and a 32-channel head coil. For each coil, the following acquisition parameters were changed, one at a time: diffusion sensitivity factor (b value), echo time, sensitivity encoding, voxel size, number of signal averages, and number of diffusion gradient directions (NDGD). DTIi including fractional anisotropy, relative anisotropy (RA), linear anisotropy (CL), and planar anisotropy (CP) were calculated for each image; the data were analyzed using the coefficient of variation (CV) and distributions of DTIi values. The 32-channel head coil presented higher CV values for the DTIi RA, CL, and CP when voxel size was changed. Using the phantom, dependences between diffusion-related parameters (b value and NDGD) and DTIi were also observed; the majority of these were for the smaller thickness fiber bundles. The device proved to be useful for the verification of the DTI performance over time.

摘要

这项工作提出了一种低成本的、基于钓鱼线的体模,用于扩散张量成像(DTI)的质量控制。该装置被用于研究DTI指标(DTIi)与成像采集参数之间的关系。使用不同厚度的纤维束构建了一种迪尼玛钓鱼线体模。在一台3T磁共振成像扫描仪中,使用8通道和32通道头部线圈进行DTI采集。对于每个线圈,每次改变以下采集参数之一:扩散敏感因子(b值)、回波时间、灵敏度编码、体素大小、信号平均次数和扩散梯度方向数(NDGD)。计算每个图像的DTIi,包括分数各向异性、相对各向异性(RA)、线性各向异性(CL)和平面各向异性(CP);使用变异系数(CV)和DTIi值分布对数据进行分析。当体素大小改变时,32通道头部线圈的DTIi RA、CL和CP的CV值更高。使用该体模,还观察到了扩散相关参数(b值和NDGD)与DTIi之间的相关性;其中大多数是针对较细厚度纤维束的。事实证明,该装置对于随时间验证DTI性能很有用。

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