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A variable echo-number method for estimating R2 in MRI-based polymer gel dosimetry

机译:基于MRI的聚合物凝胶剂量法中估算R2的可变回波数方法

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摘要

>Purpose: Spin-spin relaxation rate R2 is commonly used to quantify absorbed dose for magnetic resonance imaging (MRI)-based polymer gel dosimetry. R2 is estimated by applying a parameter fitting algorithm to a train of spin-echo signals. However, a careless application of a large number of echoes can result in anomalous R2 values because the echo signal intensity decreases to the background signal offset level for a long echo time. In this article, the authors proposed and evaluated a variable echo-number (VAREC) method to remedy the problem.>Methods: The VAREC algorithm uses only echo signals, whose intensities are greater than a preset threshold. Here, the threshold is defined as the standard deviation of Gaussian noise times a multiplier α. The authors implemented three R2 estimation methods in an in-house program: The nonlinear least-squares algorithm (NLLS), the VAREC method, and the maximum likelihood estimator with the Rician signal intensity distribution (MLE_R). Those methods were used to estimate the R2 values of test phantoms with known R2 values and BANG3-type polymer gels, which were irradiated to 12 different doses ranging from 0 to 50 Gy. The R2 values were measured by using a 32-echo CPMG pulse sequence on 3 T MRI scanners. The R2 values of the VAREC method were compared with those of NLLS and MLE_R.>Results: The R2 values of the NLLS method incorrectly decreased to the zero-dose level for doses greater than 10 Gy. The R2 values of the VAREC method with α=2 agreed with those of MLE_R within the measurement uncertainty. The uncertainties of the R2 values were the smallest for α=2 or 3 among various α values.>Conclusions: The VAREC algorithm is simple, fast, and robust for the R2 estimation. The authors recommend this method with α=2 or 3 for R2 estimation using multispin echo MRI protocols.
机译:>目的:自旋自旋弛豫率R2通常用于量化基于磁共振成像(MRI)的聚合物凝胶剂量法的吸收剂量。通过将参数拟合算法应用于自旋回波信号序列来估算R2。但是,粗心地应用大量回声会导致R2值异常,因为回声信号强度会在较长的回声时间内降低到背景信号偏移水平。在本文中,作者提出并评估了可变回波数(VAREC)方法来解决该问题。>方法: VAREC算法仅使用强度大于预设阈值的回波信号。在此,阈值定义为高斯噪声的标准偏差乘以乘数α。作者在内部程序中实现了三种R2估计方法:非线性最小二乘算法(NLLS),VAREC方法以及具有Rician信号强度分布的最大似然估计器(MLE_R)。这些方法被用来估计具有已知R2值和BANG3型聚合物凝胶的测试体模的R2值,这些凝胶被照射到0至50 Gy的12种不同剂量。通过在3 T MRI扫描仪上使用32回波CPMG脉冲序列测量R2值。将VAREC方法的R2值与NLLS和MLE_R的R2值进行了比较。>结果:对于大于10 Gy的剂量,NLLS方法的R2值错误地降低到零剂量水平。在测量不确定度内,VAREC方法的α= 2的R2值与MLE_R的R2值一致。在各种α值中,对于α= 2或3,R2值的不确定性最小。>结论: VAREC算法对于R2估计简单,快速且鲁棒。作者推荐使用α= 2或3的这种方法进行多旋回波MRI协议的R2估计。

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