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青年人大脑代谢协方差网络的小世界特性与性别差异:一项对400名受试者的FDG PET研究

Small-worldness and gender differences of large scale brain metabolic covariance networks in young adults: a FDG PET study of 400 subjects.

作者信息

Hu Yuxiao, Xu Qiang, Shen Junkang, Li Kai, Zhu Hong, Zhang Zhiqiang, Lu Guangming

机构信息

Department of Nuclear Medicine, Jinling Hospital, Clinical School of Medical College, Nanjing University, Nanjing, PR China.

Department of Medical Imaging, Jinling Hospital, Clinical School of Medical College, Nanjing University, Nanjing, PR China.

出版信息

Acta Radiol. 2015 Feb;56(2):204-13. doi: 10.1177/0284185114529106. Epub 2014 Apr 24.

Abstract

BACKGROUND

Many studies have demonstrated the small-worldness of the human brain, and have revealed a sexual dimorphism in brain network properties. However, little is known about the gender effects on the topological organization of the brain metabolic covariance networks.

PURPOSE

To investigate the small-worldness and the gender differences in the topological architectures of human brain metabolic networks.

MATERIAL AND METHODS

FDG-PET data of 400 healthy right-handed subjects (200 women and 200 age-matched men) were involved in the present study. Metabolic networks of each gender were constructed by calculating the covariance of regional cerebral glucose metabolism (rCMglc) across subjects on the basis of AAL parcellation. Gender differences of network and nodal properties were investigated by using the graph theoretical approaches. Moreover, the gender-related difference of rCMglc in each brain region was tested for investigating the relationships between the hub regions and the brain regions showing significant gender-related differences in rCMglc.

RESULTS

We found prominent small-world properties in the domain of metabolic networks in each gender. No significant gender difference in the global characteristics was found. Gender differences of nodal characteristic were observed in a few brain regions. We also found bilateral and lateralized distributions of network hubs in the females and males. Furthermore, we first reported that some hubs of a gender located in the brain regions showing weaker rCMglc in this gender than the other gender.

CONCLUSION

The present study demonstrated that small-worldness was existed in metabolic networks, and revealed gender differences of organizational patterns in metabolic network. These results maybe provided insights into the understanding of the metabolic substrates underlying individual differences in cognition and behaviors.

摘要

背景

许多研究已证实人类大脑具有小世界特性,并揭示了脑网络属性中的性别二态性。然而,关于性别对脑代谢协方差网络拓扑组织的影响却知之甚少。

目的

研究人类脑代谢网络拓扑结构中的小世界特性及性别差异。

材料与方法

本研究纳入了400名健康右利手受试者(200名女性和200名年龄匹配的男性)的氟代脱氧葡萄糖正电子发射断层显像(FDG-PET)数据。基于AAL脑区划分,通过计算受试者间区域脑葡萄糖代谢(rCMglc)的协方差构建每个性别的代谢网络。采用图论方法研究网络和节点属性的性别差异。此外,对每个脑区rCMglc的性别相关差异进行检验,以研究枢纽区域与rCMglc显示出显著性别相关差异的脑区之间的关系。

结果

我们发现每个性别的代谢网络领域都具有显著的小世界特性。未发现全局特征存在显著性别差异。在少数脑区观察到节点特征的性别差异。我们还发现了女性和男性网络枢纽的双侧及偏侧分布。此外,我们首次报道,某一性别的一些枢纽位于该性别中rCMglc比另一性别弱的脑区。

结论

本研究表明代谢网络存在小世界特性,并揭示了代谢网络组织模式的性别差异。这些结果可能为理解认知和行为个体差异背后的代谢底物提供见解。

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