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Combining RF encoding with parallel imaging: A simulation study

机译:将RF编码与并行成像相结合:仿真研究

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Object: The aim of this work was to investigate combining spatial encoding by radio frequency (RF) excitation with conventional parallel imaging (PI) methods to determine whether this could improve overall imaging performance. Materials and methods: A simulation framework was developed to predict imaging performance for regular, central and random under-sampled parallel imaging methods augmented by RF spatial signal modulation. Optimisation methods were used to find the RF modulation patterns that produce optimal image reconstruction using the condition number of the PI encoding matrix as a quality metric. The diverse patterns of raw data sampling produced were compared using a measure of data uniformity across k-space. Results: Regular under-sampling of k-space provided the best reconstruction quality. When other under-sampling schemes were employed then RF modulation could be used to improve reconstruction, with the optimum achieved by redistributing the signal in k-space to return to regular sub-sampling. For all tested under-sampling patterns, no further improvements in image quality were attained. Conclusion: Using the simulation framework and metrics described the interaction of different spatial encoding approaches could be investigated. Regular sub-sampling provided optimal reconstruction, independent of whether the spatial encoding was achieved by gradients only or a combination of gradient and RF.
机译:目的:这项工作的目的是研究将射频(RF)激发的空间编码与常规并行成像(PI)方法相结合,以确定这是否可以改善整体成像性能。材料和方法:开发了一个模拟框架来预测常规,中央和随机欠采样并行成像方法的成像性能,并通过RF空间信号调制进行增强。使用优化方法来查找使用PI编码矩阵的条件编号作为质量度量的RF调制模式,以产生最佳图像重建。使用跨k空间的数据均匀性度量比较了产生的原始数据采样的不同模式。结果:k空间的常规欠采样提供了最佳的重建质量。当采用其他欠采样方案时,可以使用RF调制来改善重构,并通过在k空间中重新分配信号以返回常规子采样来获得最佳效果。对于所有测试的欠采样模式,都无法获得图像质量的进一步改善。结论:使用模拟框架和度量标准描述了可以研究不同空间编码方法的相互作用。常规子采样提供了最佳的重构,而与空间编码是仅通过梯度还是通过梯度和RF的组合来实现无关。

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