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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Diffusion tensor imaging (DTI) of the brain in moving subjects: application to in-utero fetal and ex-utero studies.
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Diffusion tensor imaging (DTI) of the brain in moving subjects: application to in-utero fetal and ex-utero studies.

机译:运动对象大脑的弥散张量成像(DTI):在宫内胎儿和宫外研究中的应用。

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摘要

We present a methodology to achieve 3D high-resolution diffusion tensor image reconstruction of the brain in moving subjects. The source data is diffusion-sensitized single-shot echo-planar images. After continuous scanning to acquire a repeated series of parallel slices with 15 diffusion directions, image registration is used to realign the images to correct for subject motion. Once aligned, the diffusion images are treated as irregularly-sampled data where each voxel is associated with an appropriately rotated diffusion direction. This data is used to estimate the diffusion tensor on a regular grid. The method has been tested on data acquired at 1.5T from adults who deliberately moved and from eight fetuses imaged in utero. Maps of apparent diffusion coefficient (ADC) were reliably produced in all cases and promising performance was achieved for fractional anisotropy maps. Results from normal fetal brains were found to be consistent with published data from premature infants of similar gestational age.
机译:我们提出了一种方法来实现运动对象的大脑的3D高分辨率扩散张量图像重建。源数据是扩散敏感的单次回波平面图像。连续扫描以获取具有15个扩散方向的一系列重复的平行切片后,图像配准用于重新对齐图像以校正对象的运动。一旦对齐,则将扩散图像视为不规则采样的数据,其中每个体素与适当旋转的扩散方向相关联。该数据用于估计规则网格上的扩散张量。该方法已在1.5T时从故意移动的成年人和子宫内成像的八只胎儿获得的数据中进行了测试。在所有情况下均可靠地产生了视在扩散系数(ADC)图,分数各向异性图获得了可观的性能。发现正常胎儿大脑的结果与类似胎龄的早产儿的已发表数据一致。

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