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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >A new sequence for single-shot diffusion-weighted NMR spectroscopy by the trace of the diffusion tensor
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A new sequence for single-shot diffusion-weighted NMR spectroscopy by the trace of the diffusion tensor

机译:痕量扩散张量的单次扩散加权核磁共振谱的新序列

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摘要

Diffusion-weighted spectroscopy is a unique tool for exploring the intracellular microenvironment in vivo. In living systems, diffusion may be anisotropic, when biological membranes exhibit particular orientation patterns. In this work, a volume selective diffusion-weighted sequence is proposed, allowing single-shot measurement of the trace of the diffusion tensor, which does not depend on tissue anisotropy. With this sequence, the minimal echo time is only three times the diffusion time. In addition, cross-terms between diffusion gradients and other gradients are cancelled out. An adiabatic version, similar to localization by adiabatic selective refocusing sequence, is then derived, providing partial immunity against cross-terms. Proof of concept is performed ex vivo on chicken skeletal muscle by varying tissue orientation and intra-voxel shim. In vivo performance of the sequence is finally illustrated in a U87 glioblastoma mouse model, allowing the measurement of the trace apparent diffusion coefficient for six metabolites, including J-modulated metabolites. Although measurement performed along three separate orthogonal directions would bring similar accuracy on trace apparent diffusion coefficient under ideal conditions, the method described here should be useful for probing intimate properties of the cells with minimal experimental bias.
机译:扩散加权光谱法是探索体内细胞内微环境的独特工具。在生物系统中,当生物膜表现出特定的取向模式时,扩散可能是各向异性的。在这项工作中,提出了体积选择性扩散加权序列,该序列允许单次测量扩散张量的迹线,这与组织各向异性无关。使用此序列,最小回波时间仅为扩散时间的三倍。另外,消除了扩散梯度和其他梯度之间的交叉项。然后推导出一个绝热形式,类似于通过绝热选择性重聚焦序列进行的定位,从而提供了对交叉项的部分免疫力。概念验证是通过改变组织方向和体素内垫片在鸡骨骼肌上进行的。最后在U87胶质母细胞瘤小鼠模型中说明了该序列的体内性能,从而可以测量六种代谢物(包括J调节代谢物)的痕量表观扩散系数。尽管在理想条件下,沿三个单独的正交方向执行的测量将在痕量表观扩散系数上带来相似的精度,但此处描述的方法对于以最小的实验偏差探测电池的内在特性应该是有用的。

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