Miyashita Toshio
Department of Anatomy, Teikyo University School of Medicine, 2-11-1 Kaga Itabashi, Tokyo, 173-8605, Japan.
Anat Sci Int. 2025 Aug 20. doi: 10.1007/s12565-025-00877-8.
Since Mountcastle's discovery of vertically oriented cells responding to a particular sensory modality, the radially aligned columnar organization has been extensively studied. The concept of columnar organization in the cerebral cortex has been accepted as a fundamental principle. Anatomically, different types of columns are recognized, which vary in size, components, organization, and across species. However, the precise definition of a column and its role as a functional unit remains debatable. As the brain functions as a network, understanding how columnar organization is integrated within cortical circuits is essential, but many aspects of its integration into cortical circuits remain elusive despite considerable investigation. In the cerebral cortex, connected pyramidal neuron pairs often share common synaptic inputs. This fine-scale specificity of synaptic connections within cortical neurons creates subnetworks that are thought to be embedded within functional columns. However, how to embed into the functional column and what type of columnar structure or unidentified structure to embed in a subnetwork remain largely unexplored. This review comprehensively introduces both anatomically and physiologically identified functional units and discusses potential approaches for integrating these concepts.
自从芒卡斯尔发现垂直排列的细胞对特定感觉模态有反应以来,径向排列的柱状组织就得到了广泛研究。大脑皮质中柱状组织的概念已被视为一项基本原则。在解剖学上,人们认识到不同类型的柱,它们在大小、组成部分、组织以及不同物种之间存在差异。然而,柱的精确定义及其作为功能单元的作用仍存在争议。由于大脑作为一个网络发挥作用,了解柱状组织如何整合到皮质回路中至关重要,但尽管进行了大量研究,其整合到皮质回路中的许多方面仍然难以捉摸。在大脑皮质中,相连的锥体神经元对通常共享共同的突触输入。皮质神经元内突触连接的这种精细尺度特异性产生了被认为嵌入在功能柱内的子网络。然而,如何嵌入到功能柱中以及要嵌入到子网络中的柱状结构或未确定结构的类型在很大程度上仍未得到探索。这篇综述全面介绍了解剖学和生理学上确定的功能单元,并讨论了整合这些概念的潜在方法。