Cherubini Andrea, Péran Patrice, Hagberg Gisela Elisabeth, Varsi Ambra Erika, Luccichenti Giacomo, Caltagirone Carlo, Sabatini Umberto, Spalletta Gianfranco
Department of Clinical and Behavioral Neurology, Santa Lucia Foundation, Rome, Italy.
Magn Reson Med. 2009 May;61(5):1066-72. doi: 10.1002/mrm.21978.
In this study, diffusion tensor imaging (DTI) and T(2)* multiechorelaxometry were combined in 30 healthy subjects at 3T, with the aim of characterizing the spatial distribution of relaxation rates in white matter (WM). Region of interest (ROI) analysis was performed in 23 different fiber tracts automatically defined in standard space. Spearman rank analysis was performed on regional values of T(2)*, fractional anisotropy (FA), and radial diffusivity (RD). A strong relationship was observed between the location and direction of fiber bundles and relaxation rates, and adjacent fiber bundles with similar orientation showed very different relaxation rates. Moreover, while relaxation rates varied largely between different fiber tracts, variation of the same parameter within the same anatomical fiber bundle across individuals was remarkably limited. The rich variability of relaxation rates in WM and their complex relationship with DTI data suggested that the two techniques might be sensitive to complementary characteristics of myelin structure. This has tremendous potential to allow for a more detailed understanding of brain development and pathology, in particular in the context of age-related cognitive decline.
在本研究中,对30名健康受试者在3T条件下联合使用扩散张量成像(DTI)和T(2)多回波弛豫测量法,旨在描绘白质(WM)中弛豫率的空间分布。在标准空间中自动定义的23条不同纤维束上进行感兴趣区域(ROI)分析。对T(2)、分数各向异性(FA)和径向扩散率(RD)的区域值进行Spearman等级分析。观察到纤维束的位置和方向与弛豫率之间存在密切关系,且方向相似的相邻纤维束显示出非常不同的弛豫率。此外,虽然不同纤维束之间的弛豫率差异很大,但同一解剖纤维束内同一参数在个体间的变化非常有限。白质中弛豫率的丰富变异性及其与DTI数据的复杂关系表明,这两种技术可能对髓鞘结构的互补特征敏感。这对于更详细地了解大脑发育和病理学具有巨大潜力,尤其是在与年龄相关的认知衰退背景下。