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首页> 外文期刊>Psychoneuroendocrinology: An International Journal >Resting state functional MRI connectivity predicts hypothalamus-pituitary-axis status in healthy males
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Resting state functional MRI connectivity predicts hypothalamus-pituitary-axis status in healthy males

机译:静息状态下的功能性MRI连通性可预测健康男性的下丘脑-垂体轴状态

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Homeostasis of the human stress response system is critically maintained by a hierarchical system of neural and endocrine elements for which intact negative feedback is important to prevent maladaptation towards stress. Such feedback is efficiently probed by the established combined dexamethasone-suppression/corticotropin-releasing hormone stimulation (dex/CRH) test. Here we investigate which suprahypothalamic networks might modulate the response assessed by this neuroendocrine test. Combined resting state fMRI (rs-fMRI)/EEG was acquired in 20 healthy male volunteers along with dex/CRH profiles obtained on a different day outside the scanner. Seed-based network analysis and inter-seed cross correlation analysis for selected atlas-based limbic, paralimbic and medial prefrontal cortex seeds were correlated with stimulated cortisol and adrenocorticotropin hormone (ACTH) concentrations. Lower connectivity between a left hippocampus-based network and the right hippocampus significantly predicted stimulated cortisol concentration (R2=0.70, corrected pcluster=0.001). Six further significantly negative correlations were detected mainly in the left anterior cingulate cortex (ACC) and the medial prefrontal cortex (mPFC). The strongest positive correlation with stimulated hormone concentration was detected for the left subcallosal ACC (ACTH, R2=0.57, corrected pcluster=0.009). Inter-seed connectivity mainly pointed to hippocampal/amygdala interactions as correlates of the dex/CRH response. In conclusion, resting state functional connectivity patterns of limbic, particularly hippocampal, as well as cingulate and medial prefrontal areas can explain some of the variance of the dex/CRH test in healthy subjects. Functional connectivity analysis can be considered useful to study supra-hypothalamic control systems of the HPA axis.
机译:人的应激反应系统的稳态由神经和内分泌成分的分级系统严格维持,完整的负反馈对于防止适应不良的应激很重要。通过建立的地塞米松抑制/促肾上腺皮质激素释放激素刺激(dex / CRH)组合测试可有效地探测此类反馈。在这里,我们研究了哪些上丘脑网络可以调节这种神经内分泌试验评估的反应。在20位健康的男性志愿者中获得了联合静息状态功能磁共振成像(rs-fMRI)/ EEG,以及在扫描仪外另一天获得的dex / CRH曲线。基于种子的网络分析和种子间互相关分析用于基于图谱的边缘,上,下缘和内侧前额叶皮层种子与刺激的皮质醇和促肾上腺皮质激素浓度(ACTH)相关。基于左海马的网络和右海马之间较低的连通性显着预测了刺激的皮质醇浓度(R2 = 0.70,校正后的pclster = 0.001)。主要在左前扣带回皮层(ACC)和内侧前额叶皮层(mPFC)中检测到六个进一步的显着负相关。检测到左call骨下ACC与刺激的激素浓度最强的正相关(ACTH,R2 = 0.57,校正的pluster = 0.009)。种子间的连通性主要指出海马/杏仁核相互作用与dex / CRH反应有关。总之,边缘,特别是海马,以及扣带状和内侧前额叶区域的静止状态功能连接模式可以解释健康受试者中dex / CRH测试的某些差异。功能连通性分析可以被认为对研究HPA轴的超下丘脑控制系统很有用。

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