首页> 外文期刊>Frontiers in Aging Neuroscience >Disrupted Interhemispheric Synchrony in Default Mode Network Underlying the Impairment of Cognitive Flexibility in Late-Onset Depression
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Disrupted Interhemispheric Synchrony in Default Mode Network Underlying the Impairment of Cognitive Flexibility in Late-Onset Depression

机译:迟发性抑郁中认知灵活性受损的默认模式网络中的半球间同步中断

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The intuitive association between cognitive impairment and aberrant functional activity in the brain network has prompted interest in exploring the role of functional connectivity in late-onset depression (LOD). The relationship of altered voxel-mirrored homotopic connectivity (VMHC) and cognitive dysfunction in LOD is not yet well understood. This study was designed to examine the implicit relationship between the disruption of interhemispheric functional coordination and cognitive impairment in LOD. LOD patients ( N = 31) and matched healthy controls (HCs; N = 37) underwent neuropsychological tests and functional magnetic resonance imaging (fMRI) in this study. The intergroup difference of interhemispheric coordination was determined by calculating VMHC value in the whole brain. The neuro-behavioral relevancy approach was applied to explore the association between disrupted VMHC and cognitive measures. Receiver operating characteristic (ROC) curve analysis was used to determine the capability of disrupted regional VMHC to distinguish LOD. Compared to the HC group, significantly attenuated VMHC in the superior frontal gyrus (SFG), superior temporal gyrus (STG), posterior cerebellar lobe (CePL) and post- and precentral gyri were observed in the bilateral brain of LOD patients. The interhemispheric asynchrony in bilateral CePLs was positively correlated with the performance of trail making test B (TMT-B) in LOD patients ( r = 0.367, P = 0.040). ROC analysis revealed that regions with abnormal VMHC could efficiently distinguish LOD from HCs (Area Under Curve [AUC] = 0.90, P < 0.001). Altered linkage patterns of intrinsic homotopic connectivity and impaired cognitive flexibility was first investigated in LOD, and it would provide a novel clue for revealing the neural substrates underlying cognitive impairment in LOD.
机译:认知障碍与大脑网络中异常功能活动之间的直观联系促使人们对探索功能连接在迟发性抑郁症(LOD)中的作用感兴趣。 LOD中体素镜像同源连接性(VMHC)改变与认知功能障碍之间的关系尚不十分清楚。本研究旨在检查LOD的半球间功能协调破坏与认知障碍之间的隐含关系。在本研究中,对LOD患者(N = 31)和相匹配的健康对照组(HCs; N = 37)进行了神经心理学测试和功能磁共振成像(fMRI)。通过计算整个大脑中的VMHC值确定半球间协调的组间差异。应用神经行为相关性方法探讨VMHC中断与认知测量之间的关联。接收器工作特性(ROC)曲线分析用于确定受干扰的区域VMHC区分LOD的能力。与HC组相比,在LOD患者的双侧脑中观察到上额回(SFG),颞上回(STG),小脑后叶(CePL)以及中央和后中央回的VMHC显着减弱。在LOD患者中,双侧CePLs的半球间异步与跟踪测试B(TMT-B)的表现呈正相关(r = 0.367,P = 0.040)。 ROC分析显示,VMHC异常的区域可以有效区分LOD和HCs(曲线下面积[AUC] = 0.90,P <0.001)。内在同位连接性和受损的认知灵活性的改变的链接模式首先在LOD中进行了研究,这将为揭示LOD认知障碍背后的神经底物提供新的线索。

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