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Diffusion tensor imaging of the kidneys: Influence of b-Value and number of encoding directions on image quality and diffusion tensor parameters

机译:肾脏扩散张量成像:b值和编码方向数目对图像质量和扩散张量参数的影响

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摘要

OBJECTIVES: The purpose of this study was to evaluate to which degree investment of acquisition time in more encoding directions leads to better image quality (IQ) and what influence the number of encoding directions and the choice of b-values have on renal diffusion tensor imaging (DTI) parameters.\udMATERIAL AND METHODS: Eight healthy volunteers (32.3 y ± 5.1 y) consented to an examination in a 1.5T whole-body MR scanner. Coronal DTI data sets of the kidneys were acquired with systematic variation of b-values (50, 150, 300, 500, and 700 s/mm(2)) and number of diffusion-encoding directions (6, 15, and 32) using a respiratory-triggered echo-planar sequence (TR/TE 1500 ms/67 ms, matrix size 128 × 128). Additionally, two data sets with more than two b-values were acquired (0, 150, and 300 s/mm(2) and all six b-values). Parametrical maps were calculated on a pixel-by-pixel basis. Image quality was determined with a reader score.\udRESULTS: Best IQ was visually assessed for images acquired with 15 and 32 encoding directions, whereas images acquired with six directions had significantly lower IQ ratings. Image quality, fractional anisotropy, and mean diffusivity only varied insignificantly for b-values between 300 and 500 s/mm(2). In the renal medulla fractional anisotropy (FA) values between 0.43 and 0.46 and mean diffusivity (MD) values between 1.8-2.1 × 10(-3) mm(2)/s were observed. In the renal cortex, the corresponding ranges were 0.24-0.25 (FA) and 2.2-2.8 × 10(-3) mm(2)/s (MD). Including b-values below 300 s/mm(2), notably higher MD values were observed, while FA remained constant. Susceptibility artifacts were more prominent in FA maps than in MD maps.\udCONCLUSION: In DTI of the kidneys at 1.5T, the best compromise between acquisition time and resulting image quality seems the application of 15 encoding directions with b-values between 300 and 500 s/mm(2). Including lower b-values allows for assessment of fast diffusing spin components.
机译:目的:本研究的目的是评估在更多编码方向上获取时间的投入在多大程度上导致更好的图像质量(IQ),以及哪些编码方向的数量和b值的选择对肾脏扩散张量成像产生了影响(DTI)参数。\材料和方法:八名健康志愿者(32.3岁±5.1岁)同意在1.5T全身MR扫描仪中进行检查。使用b值(50、150、300、500和700 s / mm(2))和扩散编码方向数(6、15和32)的系统变化来获取肾脏的冠状DTI数据集呼吸触发的回波平面序列(TR / TE 1500 ms / 67 ms,矩阵大小128×128)。此外,还获得了两个具有两个以上b值的数据集(0、150和300 s / mm(2)和所有六个b值)。参数图是逐像素计算的。图像质量是由读者得分决定的。\ udRESULTS:以视觉方式评估以15和32个编码方向获取的图像的最佳IQ,而以6个方向获取的图像的IQ评分则明显较低。对于300到500 s / mm之间的b值,图像质量,分数各向异性和平均扩散率变化不明显(2)。在肾髓质中,分数各向异性(FA)值在0.43和0.46之间,平均扩散率(MD)值在1.8-2.1×10(-3)mm(2)/ s之间。在肾皮质中,相应的范围是0.24-0.25(FA)和2.2-2.8×10(-3)mm(2)/ s(MD)。包括b值低于300 s / mm(2),观察到明显更高的MD值,而FA保持恒定。 \ ud结论:在1.5T的肾脏DTI中,采集时间与所得图像质量之间的最佳折中似乎是应用15个b值在300至500之间的编码方向s / mm(2)。包含较低的b值可以评估快速扩散的自旋分量。

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