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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >High-resolution DTI of a localized volume using 3D single-shot diffusion-weighted STimulated echo-planar imaging (3D ss-DWSTEPI).
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High-resolution DTI of a localized volume using 3D single-shot diffusion-weighted STimulated echo-planar imaging (3D ss-DWSTEPI).

机译:使用3D单发扩散加权ST模拟回波平面成像(3D ss-DWSTEPI)的局部体积的高分辨率DTI。

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Diffusion tensor MRI (DTI) using conventional single-shot (SS) 2D diffusion-weighted (DW)-EPI is subject to severe susceptibility artifacts. Multishot DW imaging (DWI) techniques can reduce these distortions, but they generally suffer from artifacts caused by motion-induced phase errors. Parallel imaging can also reduce the distortions if the sensitivity profiles of the receiver coils allow a sufficiently high reduction factor for the desired field of view (FOV). A novel 3D DTI technique, termed 3D single-shot STimulated EPI (3D ss-STEPI), was developed to acquire high-resolution DW images of a localized region. The new technique completes k-space acquisition of a limited 3D volume after a single diffusion preparation. Because the DW magnetization is stored in the longitudinal direction until readout, it undergoes T(1) rather than T(2) decay. Inner volume imaging (IVI) is used to limit the imaging volume. This reduces the time required for EPI readout of each complete k(x)-k(y) plane, and hence reducesT(2)(*) decay during the readout and T(1) decay between the readout of each k(z). 3D ss-STEPI images appear to be free of severe susceptibility and motion artifacts. 3D ss-STEPI allows high-resolution DTI of limited volumes of interest, such as localized brain regions, cervical spinal cord, optic nerve, and other extracranial organs.
机译:使用常规单次(SS)2D扩散加权(DW)-EPI的扩散张量MRI(DTI)容易受到严重的磁化伪影。 Multishot DW成像(DWI)技术可以减少这些失真,但是它们通常会遭受由运动引起的相位误差引起的伪影。如果接收器线圈的灵敏度曲线为所需的视场(FOV)提供足够高的减小系数,则并行成像也可以减少失真。开发了一种新颖的3D DTI技术,称为3D单发STimulated EPI(3D ss-STEPI),以获取局部区域的高分辨率DW图像。这项新技术在一次扩散准备后即可完成有限3D体积的k空间采集。因为DW磁化强度是沿纵向存储的,直到读出,所以它会经历T(1)而不是T(2)衰减。内部体积成像(IVI)用于限制成像体积。这减少了EPI读出每个完整的k(x)-k(y)平面所需的时间,因此减少了读出期间的T(2)(*)衰减和每个k(z)的读出之间的T(1)衰减。 。 3D ss-STEPI图像似乎没有严重的磁化率和运动伪影。 3D ss-STEPI可以实现感兴趣的有限体积的高分辨率DTI,例如局部脑区域,颈脊髓,视神经和其他颅外器官。

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