Department of Neurosurgery, Clinical Neuroscience Center, University Hospital Zurich and University of Zurich, Zurich, Switzerland.
Brain Connectivity and Behaviour Laboratory, Sorbonne Universities, Paris, France.
Commun Biol. 2022 Jul 25;5(1):742. doi: 10.1038/s42003-022-03692-3.
Ambiguity surrounds the existence and morphology of the human forniceal commissure. We combine advanced in-vivo tractography, multidirectional ex-vivo fiber dissection, and multiplanar histological analysis to characterize this structure's anatomy. Across all 178 subjects, in-vivo fiber dissection based on the Human Connectome Project 7 T MRI data identifies no interhemispheric connections between the crura fornicis. Multidirectional ex-vivo fiber dissection under the operating microscope demonstrates the psalterium as a thin soft-tissue membrane spanning between the right and left crus fornicis, but exposes no commissural fibers. Multiplanar histological analysis with myelin and Bielchowsky silver staining, however, visualizes delicate cruciform fibers extending between the crura fornicis, enclosed by connective tissue, the psalterium. The human forniceal commissure is therefore much more delicate than previously described and presented in anatomical textbooks. This finding is consistent with the observed phylogenetic trend of a reduction of the forniceal commissure in non-human primates compared to non-primate eutherian mammals.
人类穹隆连合的存在和形态学仍存在诸多不确定性。我们结合先进的活体示踪技术、多方向的离体纤维解剖和多平面的组织学分析,对该结构的解剖结构进行了描述。在所有 178 名受试者中,基于人类连接组计划 7T MRI 数据的活体纤维解剖并未发现穹隆连合的两半球间有任何连接。在手术显微镜下进行的多方向离体纤维解剖显示,psalterium 是一个薄的软组织膜,横跨左右穹隆脚之间,但没有发现连合纤维。然而,使用髓鞘和 Bielchowsky 银染色的多平面组织学分析显示,在穹隆脚之间延伸着精致的十字形纤维,由结缔组织即 psalterium 所包围。因此,人类穹隆连合比以前描述和解剖学教科书中所呈现的要精细得多。这一发现与在非灵长类灵长类动物与非灵长类真兽类哺乳动物相比,穹隆连合的退化这一观察到的系统发育趋势是一致的。