CENSE, Department of Neurosurgery, Department of Clinical Medicine, Aarhus University Hospital, Aarhus University, Palle Juul-Jensens Boulevard 165, Entrance J, 8200, Aarhus N, Denmark.
Danish Research Centre for Magnetic Resonance, Center for Functional and Diagnostic Imaging and Research, Copenhagen University Hospital Hvidovre, 2650, Hvidovre, Denmark.
Brain Struct Funct. 2020 Apr;225(3):1055-1071. doi: 10.1007/s00429-020-02058-x. Epub 2020 Apr 3.
The limbic system encompasses a collection of brain areas primarily involved in higher cognitive and emotional processing. Altered function in the limbic circuitry may play a major role in various psychiatric disorders. This study aims to provide a high-quality ex vivo diffusion-weighted MRI (DWI) tractographic overview of the Göttingen minipig limbic system pathways, which are currently not well described. This may facilitate future translational large animal studies. The study used previously obtained post-mortem DWI scans in 3 female Göttingen minipigs aging 11-15 months. The tractography performed on the DWI data set was made using a probabilistic algorithm, and regions of interest (ROIs) were defined in accordance with a histological atlas. The investigated pathways included the fornix, mammillothalamic tract, stria terminalis, stria medullaris, habenulo-interpeduncular tract, and cingulum. All the investigated limbic connections could be visualized with a high detail yielding a comprehensive three-dimensional overview, which was emphasized by the inclusion of video material. The minipig limbic system pathways displayed using tractography closely resembled what was previously described in both human studies and neuronal tracing studies from other mammalian species. We encountered well-known inherent methodological challenges of tractography, e.g., partial volume effects and complex white matter regions, which may have contributed to derouted false-positive streamlines and the failure to visualize some of the minor limbic pathway ramifications. This underlines the importance of preexisting anatomical knowledge. Conclusively, we have, for the first time, provided an overview and substantial insight of the Göttingen minipig limbic system.
边缘系统包括一组主要参与高级认知和情感处理的脑区。边缘回路功能的改变可能在各种精神障碍中起主要作用。本研究旨在提供高质量的戈丁根小型猪边缘系统通路的离体弥散加权 MRI(DWI)示踪术概述,目前这些通路尚未得到很好的描述。这可能有助于未来的大型动物转化研究。该研究使用了之前在 3 只 11-15 月龄的雌性戈丁根小型猪死后获得的 DWI 扫描。在 DWI 数据集上进行的示踪术使用概率算法完成,并且根据组织学图谱定义了感兴趣区域(ROI)。研究的通路包括穹窿、乳头丘脑束、终纹、髓纹、缰核-脚间核束和扣带。所有研究的边缘连接都可以用高细节可视化,生成全面的三维概述,通过包括视频材料来强调这一点。使用示踪术显示的小型猪边缘系统通路与之前在人类研究和其他哺乳动物的神经元示踪研究中描述的非常相似。我们遇到了示踪术固有的一些众所周知的方法学挑战,例如部分容积效应和复杂的白质区域,这可能导致了错误的阳性流线和一些较小的边缘通路分支无法可视化。这强调了预先存在的解剖学知识的重要性。总之,我们首次提供了戈丁根小型猪边缘系统的概述和深入了解。