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弥散张量磁共振组织学揭示了发育期大鼠大脑的微观结构变化。

Diffusion tensor magnetic resonance histology reveals microstructural changes in the developing rat brain.

机构信息

Center for In Vivo Microscopy, Department of Radiology, Box 3302 Duke University Medical Center, Durham, NC 27710, USA.

出版信息

Neuroimage. 2013 Oct 1;79:329-39. doi: 10.1016/j.neuroimage.2013.04.101. Epub 2013 May 3.

Abstract

The postnatal period is a remarkably dynamic phase of brain growth and development characterized by large-scale macrostructural changes, as well as dramatic microstructural changes, including myelination and cortical layering. This crucial period of neurodevelopment is uniquely susceptible to a wide variety of insults that may lead to neurologic disease. MRI is an important tool for studying both normal and abnormal neurodevelopmental changes, and quantitative imaging strategies like diffusion tensor imaging (DTI) allow visualization of many of the complex microstructural changes that occur during postnatal life. Diffusion tensor magnetic resonance histology (DT-MRH) provides particularly unique insight into cytoarchitectural changes in the developing brain. In this study, we used DT-MRH to track microstructural changes in the rat brain throughout normal postnatal neurodevelopment. We provide examples of diffusion tensor parameter changes in both white matter and gray matter structures, and correlate these changes with changes in cytoarchitecture. Finally, we provide a comprehensive database of image sets as a foundation for future studies using DT-MRH to characterize abnormal neurodevelopment in rodent models of neurodevelopmental disease.

摘要

产后阶段是大脑生长和发育的一个非常活跃的时期,其特征是大规模的宏观结构变化,以及剧烈的微观结构变化,包括髓鞘形成和皮质分层。这个神经发育的关键时期极易受到各种可能导致神经疾病的损伤。MRI 是研究正常和异常神经发育变化的重要工具,而扩散张量成像(DTI)等定量成像策略可以观察到许多在产后生活中发生的复杂微观结构变化。扩散张量磁共振组织学(DT-MRH)特别深入地揭示了发育中大脑的细胞结构变化。在这项研究中,我们使用 DT-MRH 来跟踪正常产后神经发育过程中大鼠大脑的微观结构变化。我们提供了在白质和灰质结构中扩散张量参数变化的示例,并将这些变化与细胞结构的变化相关联。最后,我们提供了一个全面的图像集数据库,作为使用 DT-MRH 来描述神经发育疾病啮齿动物模型中异常神经发育的未来研究的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1840/3690820/fe0c62b51c0a/nihms476320f1.jpg

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