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Fast magnetic resonance spectroscopic imaging using echo-time optimization

机译:使用回波时间优化的快速磁共振波谱成像

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In recent decades, magnetic resonance spectroscopic imaging (MRSI) has become an influential technique to provide information about metabolite distributions. However, long acquisition time is required in standard MRSI to achieve satisfactory resolution in both spatial and spectral dimensions. This limitation is a key challenge for MRSI applications. To overcome this problem, we propose to implement an imaging protocol that uses echo-time optimization in the acquisition process. An efficient sequential backward selection (SBS) is used to optimize the echo-time selection in the context of echo planer imaging (EPI). To investigate this approach with a simpler acquisition method, we applied the proposed selection method to standard chemical shift imaging (CSI), using experimental phantom data. This acquisition method simplifies the reconstruction process and avoids Nyquist ghost artifacts as a means of testing the potential of optimized echo-time EPI. Comparisons are made in acquisition data volume and reconstructed spatial and spectral distribution from the proposed technique, standard MRSI and equally spaced echo-time selection. Results show that our method has the potential to greatly reduce the acquisition time without sacrificing spatial and spectral accuracy.
机译:在最近的几十年中,磁共振波谱成像(MRSI)已成为一种有影响力的技术,可提供有关代谢物分布的信息。但是,在标准MRSI中需要较长的采集时间,才能在空间和光谱维度上获得令人满意的分辨率。对于MRSI应用程序,此限制是一个关键挑战。为了克服这个问题,我们建议实现一种在采集过程中使用回波时间优化的成像协议。在回波平面成像(EPI)的背景下,有效的顺序向后选择(SBS)用于优化回波时间选择。为了用更简单的采集方法来研究这种方法,我们使用实验体模数据将建议的选择方法应用于标准化学位移成像(CSI)。这种获取方法简化了重建过程,并避免了奈奎斯特重影伪影,以此作为测试优化回波时间EPI潜力的手段。比较了所提出的技术,标准MRSI和等距回波时间选择所获得的数据量以及重构的空间和频谱分布。结果表明,我们的方法具有在不牺牲空间和光谱精度的情况下大大缩短采集时间的潜力。

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