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Preliminary Observations on Sensitivity and Specificity of Magnetization Transfer Asymmetry for Imaging Myelin of Rat Brain at High Field

机译:高原大鼠大鼠髓素磁性转移不对称性敏感性和特异性的初步观察

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Magnetization transfer ratio (MTR) has been often used for imaging myelination. Despite its high sensitivity, the specificity of MTR to myelination is not high because tissues with no myelin such as muscle can also show high MTR. In this study, we propose a new magnetization transfer (MT) indicator, MT asymmetry (MTA), as a new method of myelin imaging. The experiments were performed on rat brain at 9.4 T. MTA revealed high signals in white matter and significantly low signals in gray matter and muscle, indicating that MTA has higher specificity than MTR. Demyelination and remyelination studies demonstrated that the sensitivity of MTA to myelination was as high as that of MTR. These experimental results indicate that MTA can be a good biomarker for imaging myelination. In addition, MTA images can be efficiently acquired with an interstice MTA method, which may accelerate clinical application of myelin imaging.
机译:磁化转移比(MTR)经常用于成像髓鞘。 尽管它的灵敏度高,MTR到髓鞘的特异性不高,因为没有髓鞘的组织也可以显示出高地的MTR。 在这项研究中,我们提出了一种新的磁化转移(MT)指示剂MT不对称(MTA),作为髓成像的新方法。 在9.4吨的大鼠脑上进行实验,MTA在白质上显示出高信号,并且在灰质和肌肉中显着低信号,表明MTA具有比MTR更高的特异性。 脱髓鞘和重新髓鞘化研究表明,MTA对髓鞘的敏感性与地铁一样高。 这些实验结果表明MTA可以是用于成像髓鞘的良好生物标志物。 另外,可以用间隙MTA方法有效地获取MTA图像,其可以加速髓鞘成像的临床应用。

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