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Resting-state functional magnetic resonance imaging activity and connectivity and cognitive outcome in traumatic brain injury

机译:创伤性脑损伤中的静止状态功能磁共振成像活动,连通性和认知结果

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Importance The study of brain activity and connectivity at rest provides a unique opportunity for the investigation of the brain substrates of cognitive outcome after traumatic axonal injury. This knowledge may contribute to improve clinical management and rehabilitation programs. OBJECTIVE To study functional magnetic resonance imaging abnormalities in signal amplitude and brain connectivity at rest and their relationship to cognitive outcome in patients with chronic and severe traumatic axonal injury. DESIGN Observational study. SETTING University of Barcelona and Hospital Clinic de Barcelona, Barcelona, and Institut Guttmann-Neurorehabilitation Hospital, Badalona, Spain. PARTICIPANTS Twenty patients with traumatic brain injury (TBI) were studied, along with 17 matched healthy volunteers. INTERVENTIONS Resting-state functional magnetic resonance imaging and diffusion tensor imaging data were acquired. After exploring group differences in amplitude of low-frequency fluctuations (ALFF), we studied functional connectivity within the default mode network (DMN) by means of independent component analysis, followed by a dual regression approach and seed-based connectivity analyses. Finally, we performed probabilistic tractography between the frontal and posterior nodes of the DMN. MAIN OUTCOMES AND MEASURES Signal amplitude and functional connectivity during the resting state, tractography related to DMN, and the association between signal amplitudes and cognitive outcome. RESULTS Patients had greater ALFF in frontal regions, whichwas correlated with cognitive performance. Within the DMN, patients showed increased connectivity in the frontal lobes. Seed-based connectivity analyses revealed augmented connectivity within surrounding areas of the frontal and left parietal nodes of the DMN. Fractional anisotropy of the cingulate tract was correlated with increased connectivity of the frontal node of theDMNin patients with TBI. CONCLUSIONS AND RELEVANCE Increased ALFF is related to better cognitive performance in chronic TBI. The loss of structural connectivity produced by damage to the cingulum tract explained the compensatory increases in functional connectivity within the frontal node of the DMN.
机译:重要性对大脑活动和静止状态下的连接性的研究为创伤性轴突损伤后认知结果的脑底物研究提供了独特的机会。这些知识可能有助于改善临床管理和康复计划。目的研究功能性磁共振成像在慢性和重度创伤性轴索损伤患者静息时的信号幅度和大脑连通性异常及其与认知结果的关系。设计观察性研究。地点巴塞罗那大学和巴塞罗那医院,以及西班牙巴达洛纳古特曼神经康复医院。参与者研究了20例颅脑外伤(TBI)患者以及17名匹配的健康志愿者。干预获得静息态功能磁共振成像和扩散张量成像数据。在探究低频波动幅度(ALFF)的群体差异之后,我们通过独立成分分析,随后的双重回归方法和基于种子的连通性分析,研究了默认模式网络(DMN)中的功能连通性。最后,我们在DMN的额叶和后叶之间进行了概率性的人口统计学。主要结果和措施静息状态下的信号幅度和功能连通性,与DMN相关的束层摄影以及信号幅度与认知结果之间的关联。结果患者额叶区域的ALFF较高,这与认知能力有关。在DMN内,患者的额叶连接性增强。基于种子的连接性分析显示DMN的额叶顶叶节点和左顶叶节点周围区域内的连接性增强。在TBI患者中,扣带束的分数各向异性与DMN额叶结节的连通性增加有关。结论和相关性ALFF升高与慢性TBI的较好认知表现有关。由扣带引起的结构连接性的丧失解释了DMN额叶节点内功能性连接性的补偿性增加。

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