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恒河猴对侧和同侧前额叶皮层投射的平行组织

Parallel organization of contralateral and ipsilateral prefrontal cortical projections in the rhesus monkey.

作者信息

Barbas Helen, Hilgetag Claus C, Saha Subhash, Dermon Caterina R, Suski Joanna L

机构信息

Department of Health Sciences, Boston University, Boston, MA, USA.

出版信息

BMC Neurosci. 2005 May 3;6:32. doi: 10.1186/1471-2202-6-32.

Abstract

BACKGROUND

The neocortical commissures have a fundamental role in functional integration across the cerebral hemispheres. We investigated whether commissural projections in prefrontal cortices are organized according to the same or different rules as those within the same hemisphere, by quantitatively comparing density, topography, and laminar origin of contralateral and ipsilateral projections, labeled after unilateral injection of retrograde tracers in prefrontal areas.

RESULTS

Commissural projection neurons constituted less than one third of the ipsilateral. Nevertheless, projections from the two hemispheres were strongly correlated in topography and relative density. We investigated to what extent the distribution of contralateral projections depended on: (a) geographic proximity of projection areas to the area homotopic to the injection site; (b) the structural type of the linked areas, based on the number and neuronal density of their layers. Although both measures were good predictors, structural type was a comparatively stronger determinant of the relative distribution and density of projections. Ipsilateral projection neurons were distributed in the superficial (II-III) and deep (V-VI) layers, in proportions that varied across areas. In contrast, contralateral projection neurons were found mostly in the superficial layers, but still showed a gradient in their distribution within cortical layers that correlated significantly with cortical type, but not with geographic proximity to the homotopic area.

CONCLUSION

The organization of ipsilateral and contralateral prefrontal projections is similar in topography and relative density, differing only by higher overall density and more widespread laminar origin of ipsilateral than contralateral projections. The projections on both sides are highly correlated with the structural architecture of the linked areas, and their remarkable organization is likely established by punctuated development of distinct cortical types. The preponderance of contralateral projections from layer III may be traced to the late development of the callosal system, whose function may be compromised in diseases that have their root late in ontogeny.

摘要

背景

新皮质连合在大脑半球间的功能整合中起重要作用。我们通过定量比较在额叶前部区域单侧注射逆行示踪剂后标记的对侧和同侧投射的密度、拓扑结构和层状起源,研究额叶前部皮质中的连合投射是否按照与同一半球内相同或不同的规则进行组织。

结果

连合投射神经元占同侧投射神经元的比例不到三分之一。然而,来自两个半球的投射在拓扑结构和相对密度上密切相关。我们研究了对侧投射的分布在多大程度上取决于:(a)投射区域与注射部位同型区域的地理接近程度;(b)基于其层的数量和神经元密度的相连区域的结构类型。虽然这两种测量方法都是很好的预测指标,但结构类型是投射相对分布和密度的相对更强的决定因素。同侧投射神经元分布在浅层(II-III层)和深层(V-VI层),其比例因区域而异。相比之下,对侧投射神经元大多位于浅层,但在皮质层内仍表现出一种梯度分布,这种分布与皮质类型显著相关,但与同型区域的地理接近程度无关。

结论

同侧和对侧额叶前部投射在拓扑结构和相对密度上相似,仅在总体密度上同侧高于对侧,且同侧投射的层状起源比之对侧更广泛。两侧的投射与相连区域的结构架构高度相关,其显著的组织方式可能是由不同皮质类型的间断性发育所确立的。来自III层的对侧投射占优势可能可追溯到胼胝体系统的后期发育,其功能可能在个体发育后期发病的疾病中受到损害。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9cae/1134662/b5872218e43f/1471-2202-6-32-1.jpg

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