首页> 外文期刊>Applied psychophysiology and biofeedback >Intrinsic Functional Hypoconnectivity in Core Neurocognitive Networks Suggests Central Nervous System Pathology in Patients with Myalgic Encephalomyelitis: A Pilot Study
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Intrinsic Functional Hypoconnectivity in Core Neurocognitive Networks Suggests Central Nervous System Pathology in Patients with Myalgic Encephalomyelitis: A Pilot Study

机译:核心神经认知网络中的内在功能低连通性提示,患有肌性脑脊髓炎的患者的中枢神经系统病理学研究

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Exact low resolution electromagnetic tomography (eLORETA) was recorded from nineteen EEG channels in nine patients with myalgic encephalomyelitis (ME) and 9 healthy controls to assess current source density and functional connectivity, a physiological measure of similarity between pairs of distributed regions of interest, between groups. Current source density and functional connectivity were measured using eLORETA software. We found significantly decreased eLORETA source analysis oscillations in the occipital, parietal, posterior cingulate, and posterior temporal lobes in Alpha and Alpha-2. For connectivity analysis, we assessed functional connectivity within Menon triple network model of neuropathology. We found support for all three networks of the triple network model, namely the central executive network (CEN), salience network (SN), and the default mode network (DMN) indicating hypo-connectivity in the Delta, Alpha, and Alpha-2 frequency bands in patients with ME compared to controls. In addition to the current source density resting state dysfunction in the occipital, parietal, posterior temporal and posterior cingulate, the disrupted connectivity of the CEN, SN, and DMN appears to be involved in cognitive impairment for patients with ME. This research suggests that disruptions in these regions and networks could be a neurobiological feature of the disorder, representing underlying neural dysfunction.
机译:精确的低分辨率电磁层析成像(eLORETA)从9例肌病性脑脊髓炎(ME)和9例健康对照患者的19条EEG通道中记录,以评估电流源密度和功能连接性,这是对感兴趣的分布区域对之间的相似性进行生理测量的指标组。使用eLORETA软件测量了电流源密度和功能连接性。我们发现,在Alpha和Alpha-2的枕叶,顶叶,后扣带和后颞叶中,eLORETA源分析振荡显着降低。对于连接性分析,我们评估了神经病理学的Menon三重网络模型内的功能连接性。我们发现支持三重网络模型的所有三个网络,即中央执行网络(CEN),显着网络(SN)和默认模式网络(DMN),该网络指示Delta,Alpha和Alpha-2中的连通性较低与对照相比,ME患者的高频段。除了枕,顶,后颞和后扣带中的当前源密度静息状态功能障碍外,CEN,SN和DMN的连通性破坏似乎也参与了ME患者的认​​知障碍。这项研究表明,在这些区域和网络中破坏可能是该疾病的神经生物学特征,代表潜在的神经功能障碍。

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