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Spatiotemporal maturation patterns of murine brain quantified by diffusion tensor MRI and deformation-based morphometry

机译:弥散张量磁共振成像和基于变形的形态计量学定量的鼠脑时空成熟模式

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摘要

Highly heterogeneous spatiotemporal patterns of maturation of the murine brain during the first 80 postnatal days were examined by high-dimensional deformation-based morphometry applied to high-resolution diffusion tensor MRIs. The maturation profile revealed a sharp contrast between tissue anisotropy changes in the cortex and in major white-matter fibers. Radially oriented tissue anisotropy was measured during the first postnatal week in cortical regions, reflecting the underlying columnar organization of the cortex. Subsequently, tissue anisotropy reduced rapidly, potentially reflecting the growth of randomly oriented dendritic trees that reduce tissue coorientation. Distinct anisotropy patterns were also observed along layer I of the cortex and were attributed to thin fibers oriented parallel to the outer surface. Last, spatially complex patterns of maturation were measured in all major axonal pathways and in the hippocampus, caudate putamen, and cerebellum. This analysis provides a framework for quantifying normative maturation patterns against which phenotypes of mice of different genetic and environmental backgrounds can be contrasted.
机译:通过应用于高分辨率扩散张量MRI的基于高维变形的形态计量学检查了出生后前80天鼠脑成熟的高度异质时空模式。成熟情况表明,皮质和主要白色物质纤维的组织各向异性变化之间存在鲜明的对比。在出生后的第一周,在皮质区域测量了放射方向的组织各向异性,反映了皮质的潜在柱状组织。随后,组织各向异性迅速降低,可能反映了随机取向的树枝状树的生长,从而降低了组织的取向。沿着皮质的第一层也观察到了不同的各向异性模式,这归因于平行于外表面取向的细纤维。最后,在所有主要的轴突途径以及海马,尾状壳和小脑中都测量了成熟的空间复杂模式。这项分析提供了一个量化标准成熟模式的框架,可以对比不同遗传和环境背景的小鼠的表型。

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