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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Fractional anisotropy derived from the diffusion tensor distribution function boosts power to detect Alzheimer's disease deficits
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Fractional anisotropy derived from the diffusion tensor distribution function boosts power to detect Alzheimer's disease deficits

机译:源自扩散张量分配功能的分数各向异性促进了检测阿尔茨海默病的赤字

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Purpose In diffusion MRI (dMRI), fractional anisotropy derived from the single‐tensor model (FA DTI ) is the most widely used metric to characterize white matter (WM) microarchitecture, despite known limitations in regions with crossing fibers. Due to time constraints when scanning patients in clinical settings, high angular resolution diffusion imaging acquisition protocols, often used to overcome these limitations, are still rare in clinical population studies. However, the tensor distribution function (TDF) may be used to model multiple underlying fibers by representing the diffusion profile as a probabilistic mixture of tensors. Methods We compared the ability of standard FA DTI and TDF‐derived FA (FA TDF ), calculated from a range of dMRI angular resolutions (41, 30, 15, and 7 gradient directions), to profile WM deficits in 251 individuals from the Alzheimer's Disease Neuroimaging Initiative and to detect associations with 1) Alzheimer's disease diagnosis, 2) Clinical Dementia Rating scores, and 3) average hippocampal volume. Results Across angular resolutions and statistical tests, FA TDF showed larger effect sizes than FA DTI , particularly in regions preferentially affected by Alzheimer's disease, and was less susceptible to crossing fiber anomalies. Conclusion The TDF “corrected” form of FA may be a more sensitive and accurate alternative to the commonly used FA DTI , even in clinical quality dMRI data. Magn Reson Med 78:2322–2333, 2017. ? 2017 International Society for Magnetic Resonance in Medicine.
机译:在扩散MRI(DMRI)中,源自单张量模型(FA DTI)的分数各向异性是最广泛使用的度量,以表征白质(WM)微体系结构,尽管具有交叉纤维的区域内的已知限制。由于时间限制在临床环境中扫描患者时,高角度分辨率扩散成像采集协议,通常用于克服这些限制,在临床群体研究中仍然罕见。然而,张量分布函数(TDF)可以通过表示扩散曲线作为张量的概率混合物来模拟多个底纤维。方法比较标准FA DTI和TDF衍生的FA(FA TDF)的能力,从一系列DMRI角度分辨率(41,30,15和7梯度方向)计算,从Alzheimer的251个个体中剖析WM缺陷疾病神经影像学倡议和检测与1)患者疾病诊断的关联,2)临床痴呆评级分数,3)平均海马体积。结果横跨角度分辨率和统计测试,FA TDF显示出比FA DTI更大的效果大小,特别是在优先受阿尔茨海默病影响的区域中,并且易于过度纤维异常的影响。结论即使在临床质量DMRI数据中,FA的TDF“纠正”FA的形式也是一种更敏感和准确的替代常用的FA DTI。 MANG REAN MED 78:2322-2333,2017。 2017年医学磁共振的国际社会。

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