陈井亚,杨明,刘斌,张光玉,李慧君,冯源.正常人运动皮质的功能连接网络及其小世界性[J].中国医学影像技术,2013,29(3):344~348
正常人运动皮质的功能连接网络及其小世界性
Function connectivity and small-world property of motor cortex in healthy subjects
投稿时间:2012-09-10  修订日期:2012-12-02
DOI:
中文关键词:  运动皮质  磁共振成像  静息态  功能连接  小世界网络
英文关键词:Motor cortex  Magnetic resonance imaging  Resting-state  Functional connectivity  Small-world network
基金项目:国家自然科学基金面上项目(30970808)、南京市科技发展计划项目(7990000011)。
作者单位E-mail
陈井亚 东南大学医学院医学影像与核医学系,江苏 南京 210009  
杨明 东南大学附属中大医院放射科,江苏 南京 210009  
刘斌 东南大学附属中大医院放射科,江苏 南京 210009 liubin1220@126.com 
张光玉 东南大学医学院医学影像与核医学系,江苏 南京 210009  
李慧君 东南大学医学院医学影像与核医学系,江苏 南京 210009  
冯源 东南大学医学院医学影像与核医学系,江苏 南京 210009  
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中文摘要:
      目的: 利用静息态fMRI观察运动皮质的功能连接网络及其小世界性。方法: 对90名健康成年志愿者行静息态fMRI数据采集,分别以双侧M1区为种子点获得全脑正性及负性功能连接脑图。以这些区域作为节点,计算其平均聚类系数Cp和平均最短路径长度Lp、全脑随机网络属性Crand和Lrand;按照公式γ=Cp/Crand>1和λ=Lp/Lrand≈1分别计算γ及λ值,以验证其小世界网络属性。结果: 静息态以M1区为种子点的正激活区域主要包括双侧初级运动皮质、运动前区及辅助运动区;负激活区域包括双侧额上回、楔前叶、缘上回、角回、双侧颞上回及小脑后叶。在矩阵稀疏度0.1≤Sparsity<0.5范围内,这些区域的小世界属性符合γ=Cp/Crand>1及λ=Lp/Lrand≈1。结论: 运动皮质的正性连接主要集中在运动系统内,负性连接与脑的默认网络类似,运动皮质功能网络具有小世界性。
英文摘要:
      Objective: To observe the functional connectivity and small-world network of motor cortex in healthy subjects using resting-state fMRI. Methods: Ninety healthy adults underwent resting-state fMRI. The positive and negative correlation functional mappings within the whole brain were acquired using bilateral M1 as ROI respectively. The average clustering coefficients (Cp) and shortest path (Lp) of this network were calculated using these functional connectivity brain regions as node points. The parameter Crand and Lrand of random networks were also generated. At last, equality of the formulas γ=Cp/Crand>1, and λ=Lp/Lrand≈1 were calculated to verify the small-word network of motor cortex property. Results: The positive correlated areas included bilateral primary motor cortex, premotor area and supplementary motor cortex. Negative correlation areas were observed in the bilateral superior frontal cortex, supramarginal gyrus, angular gyrus, superior temporal gyrus, the precuneus and the bilateral posterior lobe of cerebellum. The functional network of motor cortex had the property of small-worldness within the range of 0.1≤Sparsity<0.5. Conclusion: The positive correlation areas are mainly limited in the motor cortex, and the negative connectivity maps are similar with the default mode networks. The functional network of motor cortex has small-word property.
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