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Diffusion tensor imaging in seven minutes: Determining trade-offs between spatial and directional resolution

机译:七分钟内的扩散张量成像:确定空间分辨率和方向分辨率之间的权衡

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Imaging protocols must obtain maximum information under tight time constraints, to minimize patient discomfort or attrition, and motion artifacts. As part of a pilot study optimizing DTI sequences for the Alzheimer's Disease Neuroimaging Initiative, we scanned 8 subjects with 3 DTI protocols of equal duration at two time-points (48 scans). If scan duration is fixed, collecting more diffusion-sensitized gradient directions can increase angular resolution at the expense of spatial. We compared 7-minute sequences with 3.0(48), 2.7(41), and 2.5(37) mm isotropic voxels (directions), to assess (1) SNR; (2) bias in estimating fiber anisotropy; (3) reproducibility over time; (4) intersubject variance--relevant for group comparisons. Statistical maps revealed that higher angular resolutions gave more reproducible estimates; FA depended on voxel size, with a steeper dependency in more heterogeneous regions. The intermediate resolution gave best SNR. 2mm DTI scans are common, but improved angular resolution may add temporal stability, and benefits for tractography.
机译:成像协议必须在严格的时间限制下获得最大的信息,以最大程度地减少患者的不适或磨损以及运动伪影。作为为阿尔茨海默氏病神经影像学计划优化DTI序列的一项试点研究的一部分,我们在两个时间点(3个扫描时间)用3个等长的DTI方案扫描了8位受试者。如果扫描持续时间是固定的,则收集更多的扩散敏感的梯度方向可以增加角度分辨率,但会牺牲空间。我们将7分钟序列与3.0(48),2.7(41)和2.5(37)mm各向同性体素(方向)进行了比较,以评估(1)SNR; (2)估计纤维各向异性的偏差; (3)随时间推移的可重复性; (4)主体间差异-与组比较有关。统计图显示,较高的角分辨率可提供更多可重复的估计值。 FA取决于体素的大小,在更多异构区域中的依赖性更强。中间分辨率可提供最佳SNR。 2mm DTI扫描很常见,但是提高的角分辨率可能会增加时间稳定性,并有利于放射线照相术。

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