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MRI Scan Time Reduction through K-Space Data Sharing in Combo Acquisitions with a Spin Echo Sequence

机译:通过自旋回波序列的组合采集中的K空间数据共享来减少MRI扫描时间

摘要

We propose a technique to reduce scan time for magnetic resonance imaging (MRI) through sharing of k-space data between images. As a proof of concept, we ran simulations of MRI experiments based on Bloch equations using a spin echo sequence. We generated images of a realistic brain phantom containing the tissues: white matter, gray matter, and cerebrospinal fluid. A set of k-space data was acquired while varying two acquisition parameters: repetition time (TR) and echo time (TE). This data set was then used to reconstruct multiple images of different contrast. Customized variation of TR and TE allowed us to obtain different contrast weightings of signal values. We present results for 2-contrast and 3-contrast "combo" acquisitions and compare them with images from acquisitions with fixed TR and TE. Scan time reductions of 30%-52% were achieved. Artifacts stemming from non-uniform and tissue-dependent data weighting in the Fourier domain were minimized through systematic optimization of the order of phase encoding and of variation schemes for TR and TE. No obvious degradation of image quality and resolution was observed. In addition, we quantitatively analyzed preservation of contrast, image profiles of sharp tissue boundaries, and signal-to-noise-ratio.
机译:我们提出了一种通过在图像之间共享k空间数据来减少磁共振成像(MRI)扫描时间的技术。作为概念证明,我们使用自旋回波序列对基于Bloch方程的MRI实验进行了仿真。我们生成了包含组织的现实大脑幻影的图像:白质,灰质和脑脊液。在改变两个采集参数的同时采集了一组k空间数据:重复时间(TR)和回声时间(TE)。然后,该数据集用于重建具有不同对比度的多个图像。 TR和TE的自定义变化使我们可以获得信号值的不同对比度加权。我们介绍2对比度和3对比度“组合”采集的结果,并将它们与固定TR和TE的采集图像进行比较。扫描时间减少了30%-52%。通过系统优化TR和TE的相位编码顺序和变型方案,可以最大程度地减少源自Fourier域中不均匀且与组织相关的数据加权的伪像。没有观察到图像质量和分辨率的明显下降。此外,我们定量分析了对比度的保持,清晰的组织边界的图像轮廓以及信噪比。

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  • 作者单位
  • 年度 2001
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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