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High-resolution localized spatiotemporal encoding correlated spectra under inhomogeneous magnetic fields via asymmetrical gradient encoding/decoding

机译:非对称磁场下非对称梯度编码/解码的高分辨率局部时空编码相关谱

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摘要

Applications of conventional localized nuclear magnetic resonance correlated spectroscopy are restrained by long acquisition times and poor performance under inhomogeneous magnetic fields. Here, a method that combines the spatiotemporal encoding technique with the localization technique and implements the encoding and decoding in unison with suitable asymmetrical gradients is proposed to obtain high-resolution localized correlated spectra under inhomogeneous fields in greatly reduced times. Experiments on phantom solutions prove its insensitivity to linear field inhomogeneities along three orthogonal axes. Moreover, this method is applied to adipose study of marrow tissue with resolution improvements. The proposed method may offer promising perspectives for fast analyses of biological tissues. Copyright (c) 2014 John Wiley & Sons, Ltd.
机译:常规的局部核磁共振相关光谱法的应用受到采集时间长和在非均匀磁场下性能差的限制。在此,提出一种将时空编码技术与定位技术相结合,并以适当的不对称梯度一致地进行编码和解码的方法,以在大大减少的时间内获得非均匀场下的高分辨率定位相关光谱。幻像解的实验证明了它对沿三个正交轴的线性场不均匀性不敏感。而且,该方法被用于具有改善分辨率的骨髓组织的脂肪研究。所提出的方法可以为生物组织的快速分析提供有希望的前景。版权所有(c)2014 John Wiley&Sons,Ltd.

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