Dai Guangping, Das Avilash, Hayashi Emiko, Chen Qin, Takahashi Emi
Department of Radiology, Harvard Medical School, Boston, MA, USA; Athinoula A. Martinos Center for Biomedical Imaging, Massachusetts General Hospital, Charlestown, MA, USA.
Division of Newborn Medicine, Department of Medicine, Children's Hospital Boston, Harvard Medical School, Boston, MA, USA; Medical Sciences in the College of Arts and Sciences, Boston University, Boston, MA, USA.
Int J Dev Neurosci. 2016 Nov;54:32-38. doi: 10.1016/j.ijdevneu.2016.08.004. Epub 2016 Aug 24.
Three-dimensional reconstruction of developing fiber pathways is essential to assessing the developmental course of fiber pathways in the whole brain. We applied diffusion spectrum imaging (DSI) tractography to five juvenile ex vivo cat brains at postnatal day (P) 35, when the degree of myelination varies across brain regions. We quantified diffusion properties (fractional anisotropy [FA] and apparent diffusion coefficient [ADC]) and other measurements (number, volume, and voxel count) on reconstructed pathways for projection (cortico-spinal and thalamo-cortical), corpus callosal, limbic (cingulum and fornix), and association (cortico-cortical) pathways, and characterized regional differences in maturation patterns by assessing diffusion properties. FA values were significantly higher in cortico-cortical pathways within the right hemisphere compared to those within the left hemisphere, while the other measurements for the cortico-cortical pathways within the hemisphere did not show asymmetry. ADC values were not asymmetric in both types of pathways. Interestingly, tract count and volume were significantly larger in the left thalamo-cortical pathways compared to the right thalamo-cortical pathways. The bilateral thalamo-cortical pathways showed high FA values compared to the other fiber pathways. On the other hand, ADC values did not show any differences across pathways studied. These results demonstrate that DSI tractography successfully depicted regional variations of white matter tracts during development when myelination is incomplete. Low FA and high ADC values in the cingulum bundle suggest that the cingulum bundle is less mature than the others at this developmental stage.
发育中纤维束通路的三维重建对于评估全脑纤维束通路的发育过程至关重要。我们将扩散谱成像(DSI)纤维束成像技术应用于5个出生后35天(P35)的幼年离体猫脑,此时不同脑区的髓鞘化程度各不相同。我们对投射(皮质脊髓束和丘脑皮质束)、胼胝体、边缘系统(扣带束和穹窿)以及联合(皮质皮质)通路的重建纤维束通路进行了扩散特性(分数各向异性[FA]和表观扩散系数[ADC])及其他测量(数量、体积和体素计数),并通过评估扩散特性来表征成熟模式的区域差异。与左半球内的皮质皮质通路相比,右半球内皮质皮质通路的FA值显著更高,而半球内皮质皮质通路的其他测量值未显示出不对称性。两种通路类型的ADC值均无不对称性。有趣的是,与右侧丘脑皮质通路相比,左侧丘脑皮质通路的纤维束数量和体积显著更大。与其他纤维束通路相比,双侧丘脑皮质通路显示出较高的FA值。另一方面,在所研究的各通路中,ADC值未显示出任何差异。这些结果表明,在髓鞘化不完全的发育过程中,DSI纤维束成像成功描绘了白质纤维束的区域差异。扣带束中低FA值和高ADC值表明,在这个发育阶段,扣带束比其他纤维束成熟度更低。