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Fiber orientation-dependent white matter contrast in gradient echo MRI

机译:梯度回波MRI中与纤维取向有关的白质对比

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Recent studies have shown that there is a direct link between the orientation of the nerve fibers in white matter (WM) and the contrast observed in magnitude and phase images acquired using gradient echo MRI. Understanding the origin of this link is of great interest because it could offer access to a new diagnostic tool for investigating tissue microstructure. Since it has been suggested that myelin is the dominant source of this contrast creating an accurate model for characterizing the effect of the myelin sheath on the evolution of the NMR signal is an essential step toward fully understanding WM contrast. In this study, we Show by comparison of the results of simulations and experiments carried out on human subjects at 7T, that the magnitude and phase of signals acquired from WM in vivo can be accurately characterized by (ⅰ) modeling the myelin sheath as a hollow cylinder composed of material having an anisotropic magnetic susceptibility that is described by a tensor with a radially oriented principal axis, and (ⅱ) adopting a two-pool model in which the water in the sheath has a reduced T_2 relaxation time and spin density relative to its surroundings, and also undergoes exchange. The accuracy and intrinsic simplicity of the hollow cylinder model provides a versatile framework for future exploitation of the effect of WM microstructure on gradient echo contrast in clinical MRI.
机译:最近的研究表明,白质(WM)中神经纤维的方向与使用梯度回波MRI采集的幅值和相位图像中观察到的对比度之间存在直接联系。了解此链接的起源非常重要,因为它可以提供一种用于研究组织微观结构的新诊断工具。由于已经提出髓磷脂是这种对比的主要来源,因此创建一个准确的模型以表征髓鞘对NMR信号的演变的影响是迈向充分理解WM对比度的重要步骤。在这项研究中,我们通过比较在7T时对人类受试者进行的模拟和实验的结果表明,可以通过(ⅰ)将髓鞘形成为空心来准确地表征从体内WM获得的信号的幅度和相位圆柱体由具有各向异性磁化率的材料组成,该材料由具有径向定向主轴的张量描述,并且(ⅱ)采用两池模型,其中护套中的水相对于周围的环境,也经历着交流。中空圆柱体模型的准确性和固有的简单性为将来利用WM微观结构对临床MRI中的梯度回波对比度的影响提供了通用框架。

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    Sir Peter Mansfield Magnetic Resonance Centre, School of Physics and Astronomy, University of Nottingham, Nottingham NG7 2RD, United Kingdom;

    Sir Peter Mansfield Magnetic Resonance Centre, School of Physics and Astronomy, University of Nottingham, Nottingham NG7 2RD, United Kingdom;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 00:40:31

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