Institute of Neuroscience, State Key Laboratory of Neuroscience, Center for Excellence in Brain Science and Intelligence Technology, Chinese Academy of Sciences, Shanghai, China.
University of Chinese Academy of Sciences, Beijing, China.
Elife. 2022 May 20;11:e72534. doi: 10.7554/eLife.72534.
Resolving trajectories of axonal pathways in the primate prefrontal cortex remains crucial to gain insights into higher-order processes of cognition and emotion, which requires a comprehensive map of axonal projections linking demarcated subdivisions of prefrontal cortex and the rest of brain. Here, we report a mesoscale excitatory projectome issued from the ventrolateral prefrontal cortex (vlPFC) to the entire macaque brain by using viral-based genetic axonal tracing in tandem with high-throughput serial two-photon tomography, which demonstrated prominent monosynaptic projections to other prefrontal areas, temporal, limbic, and subcortical areas, relatively weak projections to parietal and insular regions but no projections directly to the occipital lobe. In a common 3D space, we quantitatively validated an atlas of diffusion tractography-derived vlPFC connections with correlative green fluorescent protein-labeled axonal tracing, and observed generally good agreement except a major difference in the posterior projections of inferior fronto-occipital fasciculus. These findings raise an intriguing question as to how neural information passes along long-range association fiber bundles in macaque brains, and call for the caution of using diffusion tractography to map the wiring diagram of brain circuits.
解析灵长类前额皮质中的轴突通路轨迹对于深入了解认知和情绪的高级过程仍然至关重要,这需要一个全面的轴突投射图谱,将前额皮质的划定细分区域与大脑的其他部分连接起来。在这里,我们通过病毒基遗传轴突示踪技术与高通量的双光子断层扫描相结合,报告了来自腹外侧前额皮质(vlPFC)到整个猕猴大脑的中尺度兴奋性投射组,该投射组显示出与其他前额叶区域、颞叶、边缘和皮质下区域的显著单突触投射,与顶叶和岛叶区域的投射相对较弱,但没有直接投射到枕叶。在一个共同的 3D 空间中,我们定量验证了扩散轨迹成像衍生的 vlPFC 连接图谱与相关绿色荧光蛋白标记的轴突示踪的一致性,除了下额枕束后部投射的一个主要差异外,观察到了一般良好的一致性。这些发现提出了一个有趣的问题,即神经信息如何沿着猕猴大脑中的长程联合纤维束传递,并呼吁谨慎使用扩散轨迹成像来绘制大脑回路的布线图。