Advanced Imaging Research Center, Oregon Health and Science University, Portland, OR 97239, USA.
Cereb Cortex. 2009 Dec;19(12):2916-29. doi: 10.1093/cercor/bhp061. Epub 2009 Apr 10.
The morphology of axonal and dendritic arbors in the immature cerebral cortex influences the degree of anisotropy in water diffusion. This enables cortical maturation to be monitored by the noninvasive technique of diffusion tensor magnetic resonance imaging (DTI). Herein, we utilized DTI of postmortem ferret brain to quantify regional and temporal patterns in cortical maturation. We found that diffusion anisotropy within the isocortex decreases over the first month of life, coinciding closely in time with expansion of axonal and dendritic cellular processes of pyramidal neurons. Regional patterns consist of differences between allocortex and isocortex, a regional anisotropy gradient that closely parallels the transverse neurogenetic gradient, and differences between primary and nonprimary isocortical areas. By combining the temporal and regional factors, the isocortical developmental gradient magnitude corresponds to a 5-day difference in maturity between relatively developed rostral/caudal isocortex at the gradient source and less mature isocortex at the occipital pole. Additionally, the developmental trajectory of primary areas precedes nonprimary areas by 2.7 days. These quantitative estimates coincide with previous histological studies of ferret development. Similarities in cerebral cortical diffusion anisotropy observed between ferret and other species suggest the framework developed here is of general potential relevance.
不成熟大脑皮层的轴突和树突分支形态会影响水扩散的各向异性程度。这使得皮层成熟度可以通过扩散张量磁共振成像(DTI)这一非侵入性技术进行监测。在此,我们利用死后雪貂大脑的 DTI 来量化皮层成熟的区域性和时间性模式。我们发现,同型皮质内的扩散各向异性在生命的第一个月内逐渐降低,与锥体神经元的轴突和树突细胞过程的扩张时间非常吻合。区域性模式包括外侧皮质和同型皮质之间的差异、与横向神经发生梯度紧密平行的区域性各向异性梯度,以及初级和非初级同型皮质区域之间的差异。通过结合时间和区域因素,同型皮质发育梯度幅度对应于梯度源处相对发达的头/尾同型皮质与枕极较不成熟的同型皮质之间 5 天的成熟度差异。此外,初级区域的发育轨迹比非初级区域早 2.7 天。这些定量估计与雪貂发育的先前组织学研究一致。在雪貂和其他物种之间观察到的大脑皮质扩散各向异性的相似性表明,这里建立的框架具有普遍的潜在相关性。