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Functional connectivity in the default network during resting state is preserved in a vegetative but not in a brain dead patient

机译:在静止状态下默认网络中的功能连接保留在植物人体内但在死于脑死亡的患者中则不保留

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摘要

Recent studies on spontaneous fluctuations in the functional MRI blood oxygen level‐dependent (BOLD) signal in awake healthy subjects showed the presence of coherent fluctuations among functionally defined neuroanatomical networks. However, the functional significance of these spontaneous BOLD fluctuations remains poorly understood. By means of 3 T functional MRI, we demonstrate absent cortico‐thalamic BOLD functional connectivity (i.e. between posterior cingulate/precuneal cortex and medial thalamus), but preserved cortico‐cortical connectivity within the default network in a case of vegetative state (VS) studied 2.5 years following cardio‐respiratory arrest, as documented by extensive behavioral and paraclinical assessments. In the VS patient, as in age‐matched controls, anticorrelations could also be observed between posterior cingulate/precuneus and a previously identified task‐positive cortical network. Both correlations and anticorrelations were significantly reduced in VS as compared to controls. A similar approach in a brain dead patient did not show any such long‐distance functional connectivity. We conclude that some slow coherent BOLD fluctuations previously identified in healthy awake human brain can be found in alive but unaware patients, and are thus unlikely to be uniquely due to ongoing modifications of conscious thoughts. Future studies are needed to give a full characterization of default network connectivity in the VS patients population. Hum Brain Mapp, 2009. © 2009 Wiley‐Liss, Inc.
机译:对清醒健康受试者的功能性MRI血氧水平依赖性(BOLD)信号的自发性波动的最新研究表明,在功能定义的神经解剖网络之间存在一致的波动性。但是,这些自发的BOLD波动的功能意义仍然知之甚少。通过3 T功能MRI,我们证明了缺乏皮质-丘脑BOLD功能连通性(即在后扣带回/前皮质和丘脑内侧之间),但在研究了植物状态(VS)的情况下,默认网络内的皮质-皮质连接性得以保留广泛的行为和临床旁评估表明,心肺骤停后2.5年。在VS患者中,与年龄匹配的对照组一样,在扣带后部/早突神经与先前确定的任务阳性皮质网络之间也观察到反相关。与对照组相比,VS中的相关性和反相关性均显着降低。在脑死亡患者中,类似的方法没有显示出任何这种长距离功能连接。我们得出的结论是,在活着但未意识到的患者中可以发现先前在健康的清醒人脑中发现的一些缓慢,连贯的BOLD波动,因此由于意识的不断变化,这种波动不太可能是唯一的。需要进行进一步的研究以全面描述VS患者群体中的默认网络连接。嗡嗡的脑图,2009年。©2009 Wiley-Liss,Inc.

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