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Fast T2 Mapping With Improved Accuracy Using Undersampled Spin-Echo MRI and Model-Based Reconstructions With a Generating Function

机译:使用欠采样自旋回波MRI和具有生成功能的基于模型的重构提高精度的快速T2映射

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摘要

A model-based reconstruction technique for accelerated T2 mapping with improved accuracy is proposed using undersampled Cartesian spin-echo magnetic resonance imaging (MRI) data. The technique employs an advanced signal model for T2 relaxation that accounts for contributions from indirect echoes in a train of multiple spin echoes. An iterative solution of the nonlinear inverse reconstruction problem directly estimates spin-density and T2 maps from undersampled raw data. The algorithm is validated for simulated data as well as phantom and human brain MRI at 3T. The performance of the advanced model is compared to conventional pixel-based fitting of echo-time images from fully sampled data. The proposed method yields more accurate T2 values than the mono-exponential model and allows for retrospective undersampling factors of at least 6. Although limitations are observed for very long T2 relaxation times, respective reconstruction problems may be overcome by a gradient dampening approach. The analytical gradient of the utilized cost function is included as Appendix . The source code is made available to the community.
机译:利用欠采样的笛卡尔自旋回波磁共振成像(MRI)数据,提出了一种基于模型的重构技术,用于提高精度的加速T2映射。该技术对T2弛豫采用了先进的信号模型,该模型考虑了一系列自旋回波中间接回波的贡献。非线性逆重构问题的迭代解决方案可以从欠采样的原始数据中直接估算自旋密度和T2映射。该算法已针对模拟数据以及3T时的幻像和人脑MRI进行了验证。将高级模型的性能与来自完全采样数据的回波时间图像的常规基于像素的拟合进行了比较。所提出的方法比单指数模型产生更准确的T2值,并且允许回顾性欠采样因子至少为6。尽管观察到了非常长的T2弛豫时间的局限性,但是可以通过梯度衰减方法来克服各个重构问题。所用成本函数的分析梯度作为附录提供。源代码可供社区使用。

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