...
首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Anatomical connectivity defines the organization of clusters of cortical areas in the macaque monkey and the cat
【24h】

Anatomical connectivity defines the organization of clusters of cortical areas in the macaque monkey and the cat

机译:解剖连通性定义了猕猴和猫的皮质区域簇的组织

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The number of different cortical structures in mammalian brains and the number of extrinsic fibres linking these regions are both large. As with any complex system, systematic analysis is required to draw reliable conclusions about the organization of the complex neural networks comprising these numerous elements. One aspect of organization that has long been suspected is that cortical networks are organized into 'streams' or 'systems'. Here we report computational analyses capable of showing whether clusters of strongly interconnected areas are aspects of the global organization of cortical systems in macaque and cat. We used two different approaches to analyse compilations of corticocortical connection data from the macaque and the cat. The first approach, optimal set analysis, employed an explicit definition of a neural 'system' or 'stream', which was based on differential connectivity We defined a two-component cost function that described the cost of the global cluster arrangement of areas in terms of the areas' connectivity within and between candidate clusters. Optimal cluster arrangements of cortical areas were then selected computationally from the very many possible arrangements, using an evolutionary optimization algorithm. The second approach, non-parametric cluster analysis (NPCA), grouped cortical areas on the basis of their proximity in multidimensional scaling representations. We used non-metric multidimensional scaling to represent the cortical connectivity structures metrically in two and five dimensions. NPCA then analysed these representations to determine the nature of the clusters for a wide range of different cluster shape parameters. The results from both approaches largely agreed. They showed chat macaque and cat cortices are organized into densely intra-connected clusters of areas, and identified the constituent members of the clusters. These clusters reflected functionally specialized sets of cortical areas, suggesting that structure and function are closely linked at this gross, systems level. [References: 24]
机译:哺乳动物大脑中不同皮质结构的数量以及连接这些区域的外在纤维的数量都很大。与任何复杂系统一样,需要进行系统分析才能得出关于包含这些众多元素的复杂神经网络组织的可靠结论。人们长期以来一直怀疑组织的一个方面是皮质网络被组织为“流”或“系统”。在这里,我们报告的计算分析能够显示强互连区域的集群是否是猕猴和猫的皮质系统全球组织的方面。我们使用了两种不同的方法来分析来自猕猴和猫的皮层皮质连接数据。第一种方法是最优集分析,它基于差分连接性对神经“系统”或“流”进行了明确的定义。我们定义了一个由两部分组成的成本函数,该函数以区域的形式描述了全球集群安排的成本候选集群内部和之间的区域连通性。然后,使用进化优化算法从许多可能的排列中计算选择出皮质区域的最佳群集排列。第二种方法是非参数聚类分析(NPCA),它根据多维缩放比例表示中的皮质区域的接近程度对它们进行分组。我们使用非度量多维缩放来以二维和五个维度度量皮质连接结构。 NPCA随后分析了这些表示形式,以确定各种不同簇形状参数的簇的性质。两种方法的结果基本一致。他们显示,猕猴和猫的大脑皮层被组织成相互连接的密集区域簇,并确定了这些簇的组成成员。这些簇反映了功能性的皮质区域集,表明在这个总体系统级别上,结构和功能紧密相关。 [参考:24]

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号