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Isotropic resolution diffusion tensor imaging with whole brain acquisition in a clinically acceptable time

机译:在临床可接受的时间内进行全脑采集的各向同性分辨率扩散张量成像

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摘要

Our objective was to develop a diffusion tensor MR imaging pulse sequence that allows whole brain coverage with isotropic resolution within a clinically acceptable time. A single‐shot, cardiac‐gated MR pulse sequence, optimized for measuring the diffusion tensor in human brain, was developed to provide whole‐brain coverage with isotropic (2.5 × 2.5 × 2.5 mm) spatial resolution, within a total imaging time of approximately 15 min. The diffusion tensor was computed for each voxel in the whole volume and the data processed for visualization in three orthogonal planes. Anisotropy data were further visualized using a maximum‐intensity projection algorithm. Finally, reconstruction of fiber‐tract trajectories i.e., ‘tractography’ was performed. Images obtained with this pulse sequence provide clear delineation of individual white matter tracts, from the most superior cortical regions down to the cerebellum and brain stem. Because the data are acquired with isotropic resolution, they can be reformatted in any plane and the sequence can therefore be used, in general, for macroscopic neurological or psychiatric neuroimaging investigations. The 3D visualization afforded by maximum intensity projection imaging and tractography provided easy visualization of individual white matter fasciculi, which may be important sites of neuropathological degeneration or abnormal brain development. This study has shown that it is possible to obtain robust, high quality diffusion tensor MR data at 1.5 Tesla with isotropic resolution (2.5 × 2.5 × 2.5 mm) from the whole brain within a sufficiently short imaging time that it may be incorporated into clinical imaging protocols. Hum. Brain Mapping 15:216–230, 2002. © 2002 Wiley‐Liss, Inc.
机译:我们的目标是开发弥散张量MR成像脉冲序列,该序列可在临床可接受的时间内以全向分辨率实现全脑覆盖。经过优化的单次心动门控MR脉冲序列可用于测量人脑中的弥散张量,从而在全成像时间内(约2.5×2.5×2.5 mm)提供全脑覆盖,各向同性(2.5×2.5×2.5 mm)。 15分钟计算整个体积中每个体素的扩散张量,并处理数据以在三个正交平面中进行可视化。各向异性数据使用最大强度投影算法进一步可视化。最后,进行了纤维束轨迹的重建,即“束层照相术”。用这种脉冲序列获得的图像可以清楚地描绘出各个白质束,从最上层的皮质区域一直到小脑和脑干。由于以各向同性的分辨率获取数据,因此可以在任何平面上对它们进行重新格式化,因此通常可以将该序列用于宏观神经或精神科神经影像学研究。最大强度投影成像和束带成像提供的3D可视化提供了单个白质束的轻松可​​视化,这可能是神经病理学退化或大脑发育异常的重要部位。这项研究表明,有可能在足够短的成像时间内从整个大脑中以全向同性分辨率(2.5×2.5×2.5 mm)在1.5 Tesla下获得强大的高质量扩散张量MR数据,可以将其纳入临床成像协议。哼。 Brain Mapping 15:216–230,2002.©2002 Wiley-Liss,Inc.

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