Laboratory of Functional and Molecular Imaging, National Institute of Neurological Disease and Stroke, National Institutes of Health, Bethesda, Maryland, USA.
Magn Reson Med. 2009 Dec;62(6):1652-7. doi: 10.1002/mrm.22156.
Recent in vivo MRI studies at 7.0 T have demonstrated extensive heterogeneity of T(2)* relaxation in white matter of the human brain. In order to study the origin of this heterogeneity, we performed T(2)* measurements at 1.5, 3.0, and 7.0 T in normal volunteers. Formalin-fixed brain tissue specimens were also studied using T(2)-weighted MRI, histologic staining, chemical analysis, and electron microscopy. We found that T(2) relaxation rate (R(2)* = 1/T(2)) in white matter in living human brain is linearly dependent on the main magnetic field strength, and the T(2) heterogeneity in white matter observed at 7.0 T can also be detected, albeit more weakly, at 1.5 and 3.0 T. The T(2)* heterogeneity exists also in white matter of the formalin-fixed brain tissue specimens, with prominent differences between the major fiber bundles such as the cingulum (CG) and the superior corona radiata. The white matter specimen with substantial difference in T(2)* has no significant difference in the total iron content, as determined by chemical analysis. On the other hand, evidence from histologic staining and electron microscopy demonstrates these tissue specimens have apparent difference in myelin content and microstructure.
最近在 7.0T 场强下进行的活体 MRI 研究表明,人脑白质中 T(2)*弛豫存在广泛的异质性。为了研究这种异质性的来源,我们在正常志愿者中分别在 1.5、3.0 和 7.0T 下进行了 T(2)*测量。我们还使用 T(2)加权 MRI、组织学染色、化学分析和电子显微镜对福尔马林固定的脑组织标本进行了研究。我们发现,活体人脑白质中的 T(2)弛豫率(R(2)=1/T(2))与主磁场强度呈线性相关,并且在 7.0T 下观察到的白质 T(2)*异质性在 1.5 和 3.0T 下也可以检测到,尽管强度较弱。福尔马林固定的脑组织标本中的白质也存在 T(2)*异质性,在胼胝体(CG)和上放射冠等主要纤维束之间存在明显差异。通过化学分析,在 T(2)*有显著差异的白质样本中,总铁含量没有显著差异。另一方面,组织学染色和电子显微镜的证据表明,这些组织标本在髓鞘含量和微观结构上存在明显差异。