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Population-averaged macaque brain atlas with high-resolution ex vivo DTI integrated into in vivo space

机译:将具有高分辨率离体DTI的平均种群猕猴脑图集整合到体内空间中

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摘要

Animal models of the rhesus macaque (Macaca mulatta), the most widely used nonhuman primate, have been irreplaceable in neurobiological studies. However, a population-averaged macaque brain diffusion-tensor-imaging (DTI) atlas, including comprehensive gray and white matter labeling as well as bony and facial landmarks guiding invasive experimental procedures, is not available. The macaque white matter tract pathways and microstructures have been rarely recorded. Here, we established a population-averaged macaque brain atlas with high-resolution ex vivo DTI integrated into in vivo space incorporating bony and facial landmarks, and delineated microstructures and three-dimensional pathways of major white matter tracts. In vivo MRI/DTI and ex vivo (postmortem) DTI of 10 rhesus macaque brains were acquired. Single-subject macaque brain DTI template was obtained by transforming the postmortem high resolution DTI data into in vivo space. Ex vivo DTI of 10 macaque brains was then averaged in the in vivo single-subject template space to generate population-averaged macaque brain DTI atlas. The white matter tracts were traced with DTI-based tractography. 118 neural structures including all cortical gyri, white matter tracts and subcortical nuclei, were labeled manually on population-averaged DTI-derived maps. The in vivo microstructural metrics of fractional anisotropy, axial, radial and mean diffusivity of the traced white matter tracts were measured. Population-averaged digital atlas integrated into in vivo space can be used to label the experimental macaque brain automatically. Bony and facial landmarks will be available for guiding invasive procedures. The DTI-metric measurements offer unique insights into heterogeneous microstructural profiles of different white matter tracts.
机译:在神经生物学研究中,恒河猴(Macaca mulatta)(使用最广泛的非人类灵长类动物)的动物模型已不可替代。但是,尚无人口平均的猕猴脑弥散张量成像(DTI)地图集,其中包括全面的灰色和白色物质标记以及引导侵入性实验程序的骨骼和面部标志。猕猴白质束途径和微结构已很少记录。在这里,我们建立了人口平均的猕猴脑图谱,将高分辨率的离体DTI整合到体内空间中,该空间整合了骨骼和面部标志物,并描绘了主要白质束的微观结构和三维路径。获得了10只恒河猴猕猴的体内MRI / DTI和离体(死后)DTI。通过将事后高分辨率DTI数据转换为体内空间来获得单主体猕猴DTI模板。然后,在体内单对象模板空间中对10只猕猴的离体DTI进行平均,以生成种群平均的猕猴DTI图集。用基于DTI的束线描记术追踪白质束。在人口平均DTI衍生图上手动标记了118个神经结构,包括所有皮质回,白质束和皮质下核。测量了所追踪的白质束的分数各向异性,轴向,径向和平均扩散率的体内微结构指标。整合到体内空间的人口平均数字地图集可用于自动标记实验性猕猴。骨头和面部标志将可用于指导侵入性手术。 DTI度量测量提供了对不同白质束的异质微结构轮廓的独特见解。

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