USC Stevens Neuroimaging and Informatics Institute, Laboratory of Neuro Imaging (LONI), Keck School of Medicine of University of Southern California, Los Angeles, CA, 90033, USA.
Zilkha Neurogenetic Institute, Keck School of Medicine of University of Southern California, Los Angeles, CA, 90033, USA.
Sci Rep. 2021 Feb 12;11(1):3729. doi: 10.1038/s41598-021-81362-w.
The subiculum is the major output component of the hippocampal formation and one of the major brain structures most affected by Alzheimer's disease. Our previous work revealed a hidden laminar architecture within the mouse subiculum. However, the rotation of the hippocampal longitudinal axis across species makes it unclear how the laminar organization is represented in human subiculum. Using in situ hybridization data from the Allen Human Brain Atlas, we demonstrate that the human subiculum also contains complementary laminar gene expression patterns similar to the mouse. In addition, we provide evidence that the molecular domain boundaries in human subiculum correspond to microstructural differences observed in high resolution MRI and fiber density imaging. Finally, we show both similarities and differences in the gene expression profile of subiculum pyramidal cells within homologous lamina. Overall, we present a new 3D model of the anatomical organization of human subiculum and its evolution from the mouse.
下托是海马结构的主要输出成分之一,也是受阿尔茨海默病影响最大的主要大脑结构之一。我们之前的工作揭示了小鼠下托中隐藏的层状结构。然而,由于海马纵轴在物种间的旋转,使得在人类下托中,层状组织是如何表现的还不清楚。我们利用来自艾伦人脑图谱的原位杂交数据,证明人类下托也包含类似的互补层状基因表达模式。此外,我们还提供了证据表明,人类下托的分子域边界与高分辨率 MRI 和纤维密度成像中观察到的微观结构差异相对应。最后,我们展示了同源层内下托锥体神经元的基因表达谱的相似性和差异。总的来说,我们提出了一个人类下托解剖组织及其从老鼠进化而来的新的 3D 模型。