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一套具有精细亚解剖结构描绘的小鼠脑立体定向MRI模板集:应用于5XFAD小鼠的磁共振弹性成像研究。

A stereotaxic MRI template set of mouse brain with fine sub-anatomical delineations: Application to MEMRI studies of 5XFAD mice.

作者信息

Nie Binbin, Wu Di, Liang Shengxiang, Liu Hua, Sun Xi, Li Panlong, Huang Qi, Zhang Tianhao, Feng Ting, Ye Songtao, Zhang Zhijun, Shan Baoci

机构信息

Beijing Engineering Research Center of Radiographic Techniques and Equipment, Institute of High Energy Physics, Chinese Academy of Sciences, Beijing 100049, China; School of Nuclear Science and Technology, University of Chinese Academy of Sciences, Beijing 100049, China; CAS Center for Excellence in Brain Science and Intelligence Technology, Shanghai 200031, China.

Department of Neurology, Affiliated ZhongDa Hospital, Neuropsychiatric Institute, School of Medicine, Southeast University, Nanjing 210009, China.

出版信息

Magn Reson Imaging. 2019 Apr;57:83-94. doi: 10.1016/j.mri.2018.10.014. Epub 2018 Oct 22.

Abstract

PURPOSE

Manganese-enhanced magnetic resonance imaging (MEMRI) can help us trace the active neurons and neuronal pathway in transgenic mouse AD model. 5XFAD has been widespread accepted as a valuable model system for studying brain dysfunction progresses in the courses of AD. To further understand the development of AD at early stages, an effective and objective data analysis platform for MEMRI studies should be constructed.

MATERIALS AND METHODS

A set of stereotaxic templates of mouse brain in Paxinos and Franklin space, "the Institute of High Energy Physics Mouse Template", or IMT for short, was constructed by iteratively registration and averaging. An atlas image was reconstructed from the Paxinos and Franklin atlas figures and each sub-anatomical segmentation was assigning a unique integer. An analysis SPM plug-in toolbox was further created, that automates and standardizes the time-consuming processes of brain extraction, tissue segmentation, and statistical analysis for MEMRI scans.

RESULTS

The IMT comprised a T2WI template image, a MEMRI template image, intracranial tissue segmentations, and accompany with a digital mouse brain atlas image, in which 707 sub-anatomical brain regions are delineated. Data analyses were performed on groups of developing 5XFAD mice to demonstrate the usage of IMT, and the results shows that abnormal neuronal activity occurs at early stage in 5XFAD mice.

CONCLUSION

We have constructed a stereotaxic template set of mouse brain named IMT with fine delineations of sub-anatomical structures, which is compatible with SPM. It will give a widely range of researchers a standardized coordinate system for localization of any mouse brain related data.

摘要

目的

锰增强磁共振成像(MEMRI)有助于我们追踪转基因小鼠阿尔茨海默病(AD)模型中的活性神经元和神经通路。5XFAD已被广泛接受为研究AD病程中脑功能障碍进展的有价值模型系统。为了进一步了解AD早期的发展情况,应构建一个用于MEMRI研究的有效且客观的数据分析平台。

材料与方法

通过迭代配准和平均构建了一组帕西诺斯和富兰克林空间中的小鼠脑立体定位模板,简称为“高能物理研究所小鼠模板”或IMT。从帕西诺斯和富兰克林图谱数字重建了一幅图谱图像,每个亚解剖分割都被赋予一个唯一的整数。进一步创建了一个分析SPM插件工具箱,该工具箱可自动执行并标准化MEMRI扫描中耗时的脑提取、组织分割和统计分析过程。

结果

IMT包括一幅T2WI模板图像、一幅MEMRI模板图像、颅内组织分割,并伴有一幅数字小鼠脑图谱图像,其中描绘了707个亚解剖脑区。对发育中的5XFAD小鼠组进行了数据分析以演示IMT的使用,结果表明5XFAD小鼠在早期就出现了异常神经元活动。

结论

我们构建了一套名为IMT的小鼠脑立体定位模板集,对亚解剖结构进行了精细描绘,与SPM兼容。它将为广大研究人员提供一个用于定位任何小鼠脑相关数据的标准化坐标系。

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