Witter Menno P
Graduate School Neurosciences Amsterdam, Institute for Clinical and Experimental Neurosciences, Department of Anatomy and Neurosciences, VU University Medical Center, 1007 MB Amsterdam, The Netherlands.
Behav Brain Res. 2006 Nov 11;174(2):251-64. doi: 10.1016/j.bbr.2006.06.022. Epub 2006 Jul 31.
This paper summarizes published as well as yet unpublished data on the organization of the subiculum. Because of the complex three-dimensional structure of the hippocampus, all traditional planes of sectioning will result in sections that at some point or another do not cut through the hippocampus at an angle that is perpendicular to its long axis; particular focus therefore is on data using the so-called extended preparation. On the basis of our yet fragmented insights in the intrinsic network, as well as the known organization of major efferents and afferents, we propose that the subiculum is organized as a matrix of columnar modules along the transverse axis showing partial laminar connectivity. Although many pieces of the large-scale puzzle on the subicular neuronal network as part of an input-output network for the hippocampus are still missing, it appears that subicular organization is different from that known for CA1. This indicates that major functional differences between CA1 and the subiculum are to be expected.
本文总结了已发表以及尚未发表的关于下托组织结构的数据。由于海马体具有复杂的三维结构,所有传统的切片平面都会导致切片在某些点上无法以垂直于其长轴的角度穿过海马体;因此,特别关注使用所谓扩展标本的数据。基于我们对内在网络尚不完整的认识,以及主要传出和传入纤维的已知组织结构,我们提出下托沿着横轴组织成柱状模块矩阵,呈现出部分分层连接。尽管作为海马体输入 - 输出网络一部分的下托神经元网络这一大规模拼图的许多部分仍缺失,但下托的组织结构似乎与CA1区不同。这表明CA1区和下托之间预计存在主要的功能差异。