Allen Institute for Brain Science, Seattle, WA 98109, USA.
Functional Neuroimaging Laboratory, Istituto Italiano di Tecnologia, Center for Neuroscience and Cognitive Systems @ UniTn, 38068 Rovereto, Italy; DeepMind, London EC4A 3TW, UK.
Neuron. 2021 Feb 3;109(3):545-559.e8. doi: 10.1016/j.neuron.2020.11.011. Epub 2020 Dec 7.
The evolutionarily conserved default mode network (DMN) is a distributed set of brain regions coactivated during resting states that is vulnerable to brain disorders. How disease affects the DMN is unknown, but detailed anatomical descriptions could provide clues. Mice offer an opportunity to investigate structural connectivity of the DMN across spatial scales with cell-type resolution. We co-registered maps from functional magnetic resonance imaging and axonal tracing experiments into the 3D Allen mouse brain reference atlas. We find that the mouse DMN consists of preferentially interconnected cortical regions. As a population, DMN layer 2/3 (L2/3) neurons project almost exclusively to other DMN regions, whereas L5 neurons project in and out of the DMN. In the retrosplenial cortex, a core DMN region, we identify two L5 projection types differentiated by in- or out-DMN targets, laminar position, and gene expression. These results provide a multi-scale description of the anatomical correlates of the mouse DMN.
进化保守的默认模式网络(DMN)是一组在休息状态下共同激活的大脑区域,易受大脑疾病的影响。目前尚不清楚疾病如何影响 DMN,但详细的解剖描述可能提供线索。老鼠为研究 DMN 的结构连接提供了一个机会,可以在空间尺度上以细胞类型分辨率进行研究。我们将功能磁共振成像和轴突示踪实验的图谱共同配准到 3D 艾伦老鼠脑参考图谱中。我们发现,老鼠的 DMN 由优先相互连接的皮质区域组成。作为一个群体,DMN 的第 2/3 层(L2/3)神经元几乎只投射到其他 DMN 区域,而 L5 神经元则在 DMN 内外投射。在 DMN 的核心区域——后扣带皮层中,我们发现了两种 L5 投射类型,它们通过内 DMN 或外 DMN 目标、层位置和基因表达来区分。这些结果提供了老鼠 DMN 的解剖学相关性的多尺度描述。