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An application of algebraic method on MR T2 imaging of knee articular cartilage

机译:代数方法在膝关节软骨MR T2成像中的应用

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The computation of relaxation time from quantitative magnetic resonance (MR) imaging depends on the applied algorithms. The purpose of this project was to use the algebraic curve fitting algorithm to quantify T2 mapping of knee articular cartilage for T2 relaxation time calculation. The T2 images of a healthy male volunteer's right knee tibiofemoral joint cartilage were generated by a 3T MR imaging scanner using a spin echo multislice multiecho (MSME) Carr-Purcell Meiboom-Gill (CPMG) sequence. The medial and lateral condyle cartilage regions were further subdivided into three compartments - anterior, middle and posterior for identifying T2 values variation in between them. The T2 relaxation time mean and standard deviation in each region of interest (ROI) was calculated using the algebraic fitting algorithm and compared with conventional nonlinear algorithms. The results show that the algebraic fitting algorithm is feasible for T2 relaxation time calculation of knee tibiofemoral condyle cartilage. It is not only clear but also sensitive to T2 MR imaging of knee articular cartilage.
机译:通过定量磁共振(MR)成像计算弛豫时间取决于所应用的算法。该项目的目的是使用代数曲线拟合算法来量化膝关节软骨的T2映射,以计算T2松弛时间。由3T MR成像扫描仪使用自旋回波多层多回波(MSME)Carr-Purcell Meiboom-Gill(CPMG)序列生成健康男性志愿者右膝胫股骨关节软骨的T2图像。内侧和外侧con突软骨区域进一步细分为三个区室-前,中和后区,以识别它们之间的T2值变化。使用代数拟合算法计算每个关注区域(ROI)的T2弛豫时间平均值和标准差,并将其与常规非线性算法进行比较。结果表明,代数拟合算法对于计算膝上胫股con突的T2弛豫时间是可行的。它不仅清楚而且对膝关节软骨的T2 MR成像也很敏感。

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