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Rapid MR spectroscopic imaging of lactate using compressed sensing

机译:使用压缩传感对乳酸盐进行快速MR光谱成像

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Imaging lactate metabolism in vivo may improve cancer targeting and therapeutics due to its key role in the development, maintenance, and metastasis of cancer. The long acquisition times associated with magnetic resonance spectroscopic imaging (MRSI), which is a useful technique for assessing metabolic concentrations, are a deterrent to its routine clinical use. The objective of this study was to combine spectral editing and prospective compressed sensing (CS) acquisitions to enable precise and high-speed imaging of the lactate resonance. A MRSI pulse sequence with two key modifications was developed: (1) spectral editing components for selective detection of lactate, and (2) a variable density sampling mask for pseudo-random under-sampling of the k-space 'on the fly'. The developed sequence was tested on phantoms and in vivo in rodent models of cancer. Datasets corresponding to the 1X (fully-sampled), 2X, 3X, 4X, 5X, and 10X accelerations were acquired. The under-sampled datasets were reconstructed using a custom-built algorithm in Matlab™, and the fidelity of the CS reconstructions was assessed in terms of the peak amplitudes, SNR, and total acquisition time. The accelerated reconstructions demonstrate a reduction in the scan time by up to 90% in vitro and up to 80% in vivo, with negligible loss of information when compared with the fully-sampled dataset. The proposed unique combination of spectral editing and CS facilitated rapid mapping of the spatial distribution of lactate at high temporal resolution. This technique could potentially be translated to the clinic for the routine assessment of lactate changes in solid tumors.
机译:由于体内乳酸代谢的成像在癌症的发展,维持和转移中起着关键作用,因此可以在体内对乳酸代谢进行成像。与磁共振波谱成像(MRSI)相关的较长采集时间是一种用于评估代谢浓度的有用技术,这阻碍了其常规临床应用。这项研究的目的是将频谱编辑和前瞻性压缩传感(CS)采集相结合,以实现乳酸共振的精确和高速成像。开发了具有两个关键修改的MRSI脉冲序列:(1)用于选择性检测乳酸盐的光谱编辑组件,以及(2)用于“实时”对k空间进行伪随机欠采样的可变密度采样掩码。在癌症的啮齿动物模型中,在幻影上和体内测试了开发的序列。采集与1X(完全采样),2X,3X,4X,5X和10X加速度对应的数据集。使用Matlab™中的自定义算法重建欠采样数据集,并根据峰幅度,SNR和总采集时间评估CS重建的保真度。与完全采样的数据集相比,加速的重建证明了扫描时间在体外最多可减少90%,在体内最多可减少80%,而信息丢失则可忽略不计。频谱编辑和CS的拟议独特组合有助于在高时间分辨率下快速绘制乳酸的空间分布图。该技术可能会转化为临床,用于常规评估实体瘤中乳酸的变化。

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