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Abnormal Basal Ganglia Functional Connectivity in Idiopathic Generalized Epilepsy 被引量:1

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摘要 The basal ganglia have been implicated in a modulation role in idiopathic generalized epilepsy (IGE) by an invasive electrophysioigic means. This paper investigates the basal ganglia functional connectivity by using the region-wise functional connection analysis in resting-state functional magnetic resonance imaging (fMRI) in IGE. The increased functional connectivity within basal ganglia, and between the basal ganglia and the thalamus, and decreased functional connectivity between basal ganglia and motor cortex are found in IGE compared with the controls. These findings not only implicate dysfunctional integration in the motor loop in IGE and the enhanced interaction in the modulated loop, but also suggest that the basal ganglia modulate the generalized epileptic discharges with the influence over thalamus in the corticothalamus network. The basal ganglia have been implicated in a modulation role in idiopathic generalized epilepsy (IGE) by an invasive electrophysioigic means. This paper investigates the basal ganglia functional connectivity by using the region-wise functional connection analysis in resting-state functional magnetic resonance imaging (fMRI) in IGE. The increased functional connectivity within basal ganglia, and between the basal ganglia and the thalamus, and decreased functional connectivity between basal ganglia and motor cortex are found in IGE compared with the controls. These findings not only implicate dysfunctional integration in the motor loop in IGE and the enhanced interaction in the modulated loop, but also suggest that the basal ganglia modulate the generalized epileptic discharges with the influence over thalamus in the corticothalamus network.
出处 《Journal of Electronic Science and Technology》 CAS 2011年第3期278-284,共7页 电子科技学刊(英文版)
基金 supported by the National Natural Science Foundation of China under Grant No. 81071222
关键词 Index Terms-Basal ganglia functional magnetic resonance imaging functional connectivity idiopathic generalized epilepsy. Index Terms-Basal ganglia, functional magnetic resonance imaging, functional connectivity, idiopathic generalized epilepsy.
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  • 1W. Liao,Z. Zhang,Z. Pan,D. Mantini,J. Ding,X. Duan,C. Luo,Z. Wang,Q. Tan,G. Lu,H. Chen."Default mode network abnormalities in mesial temporal lobe epilepsy: a study combining fMRI and DTI,"[].Human Brain Mapping.2011
  • 2A. D. Norden,H. Blumenfeld."The role of subcortical structures in human epilepsy,"[].Epilepsy and Behavior.2002
  • 3C. Luo,Q. Li,Y. Lai,Y. Xia,Y. Qin,W. Liao,S. Li,D. Zhou,D. Yao,Q. Gong."Altered functional connectivity in default mode network in absence epilepsy: a resting-state fMRI study,"[].Human Brain Mapping.2011
  • 4C. Luo,Y. Xia,Q. Li,K. Xue,Y. Lai,Q. Gong,D. Zhou,D. Yao."Diffusion and volumetry abnormalities in subcortical nuclei of patients with absence seizures,"[].Epilepsia.2011
  • 5J. Gotman,C. Grova,A. Bagshaw,E. Kobayashi,Y. Aghakhani,F. Dubeau."Generalized epileptic discharges show thalamocortical activation and suspension of the default state of the brain,"[].Proc of the National Academy of Sciences of the United States of America.2005
  • 6S. J. Broyd,C. Demanuele,S. Debener,S. K. Helps,C. J. James,E. J. Sonuga-Barke."Default-mode brain dysfunction in mental disorders: a systematic review,"[].Neuroscience and Biobehavioral Reviews.2009
  • 7C. Luo,D. Zhou,D. Yao."Reduced functinal connetivity between mediodorsal thalamic nucleus and anterior cingulated cortex in absence epilepsy,"[].Proc of International Conf of Medical Image Analysis and Clinical Applications.2010
  • 8C. Luo,Q. Li,Y. Xia,X. Lei,K. Xue,Z. Yao,Y. Lai,E. Martinez-Montes,W. Liao,D. Zhou,P. A. Valdes-Sosa,Q. Gong,D. Yao."Resting state basal ganglia network in idiopathic generalized epilepsy,"[].Human Brain Mapping.
  • 9C. Deransart,B. T. Le-Pham,E. Hirsch,C. Marescaux,A. Depaulis."Inhibition of the substantia nigra suppresses absences and clonic seizures in audiogenic rats, but not tonic seizures: evidence for seizure specificity of the nigral control,"[].Neuroscience.2001

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