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Disrupted Gamma Synchrony after Mild Traumatic Brain Injury and Its Correlation with White Matter Abnormality

机译:轻度颅脑外伤后Gamma同步性紊乱及其与白色物质异常的相关性

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摘要

Mild traumatic brain injury (mTBI) has been firmly associated with disrupted white matter integrity due to induced white matter damage and degeneration. However, comparatively less is known about the changes of the intrinsic functional connectivity mediated via neural synchronization in the brain after mTBI. Moreover, despite the presumed link between structural and functional connectivity, no existing studies in mTBI have demonstrated clear association between the structural abnormality of white matter axons and the disruption of neural synchronization. To investigate these questions, we recorded resting state EEG and diffusion tensor imaging (DTI) from a cohort of military service members. A newly developed synchronization measure, the weighted phase lag index was applied on the EEG data for estimating neural synchronization. Fractional anisotropy was computed from the DTI data for estimating white matter integrity. Fifteen service members with a history of mTBI within the past 3 years were compared to 22 demographically similar controls who reported no history of head injury. We observed that synchronization at low-gamma frequency band (25–40 Hz) across scalp regions was significantly decreased in mTBI cases compared with controls. The synchronization in theta (4–7 Hz), alpha (8–13 Hz), and beta (15–23 Hz) frequency bands were not significantly different between the two groups. In addition, we found that across mTBI cases, the disrupted synchronization at low-gamma frequency was significantly correlated with the white matter integrity of the inferior cerebellar peduncle, which was also significantly reduced in the mTBI group. These findings demonstrate an initial correlation between the impairment of white matter integrity and alterations in EEG synchronization in the brain after mTBI. The results also suggest that disruption of intrinsic neural synchronization at low-gamma frequency may be a characteristic functional pathology following mTBI and may prove useful for developing better methods of diagnosis and treatment.
机译:轻度创伤性脑损伤(mTBI)与白质完整性破坏密切相关,归因于白质损伤和变性。然而,关于mTBI后通过大脑中的神经同步介导的内在功能连接性变化的了解相对较少。此外,尽管推测结构和功能连接之间存在联系,但mTBI中的现有研究均未证明白质轴突的结构异常与神经同步障碍之间存在明显的联系。为了调查这些问题,我们记录了一组士兵的静息状态脑电图和弥散张量成像(DTI)。一种新开发的同步措施,加权相位滞后指数应用于脑电数据,以估计神经同步。从DTI数据计算出分数各向异性,以估计白质完整性。将15名在过去3年内有mTBI病史的服务人员与22名在人口统计学上相似的,没有头部受伤史的对照组进行比较。我们观察到,与对照组相比,mTBI病例在头皮区域的低伽马频带(25–40 Hz)处的同步显着降低。两组之间在theta(4–7 Hz),alpha(8–13 Hz)和beta(15–23 frequencyHz)频带中的同步没有显着差异。此外,我们发现在所有mTBI病例中,低伽马频率下的同步中断与下小脑梗的白质完整性显着相关,在mTBI组中也显着降低。这些发现表明,mTBI后白质完整性受损与脑电同步性改变之间存在初步的相关性。结果还表明,在低伽玛频率下固有神经同步的破坏可能是继mTBI之后的特征性功能病理,并且可能对开发更好的诊断和治疗方法有用。

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