He Biyu J, Shulman Gordon L, Snyder Abraham Z, Corbetta Maurizio
Department of Radiology, Washington University, St. Louis, Missouri 63110, USA.
Curr Opin Neurol. 2007 Dec;20(6):655-60. doi: 10.1097/WCO.0b013e3282f1c720.
PURPOSE OF REVIEW: Basic and translational neuroscience findings indicate that normal brain function depends on activity synchronization within distributed brain networks. This conclusion suggests a view of how brain injury causes behavioral deficits that differs from traditional localizationist views. RECENT FINDINGS: Novel functional neuroimaging methods demonstrate coherent activity in large-scale networks not only during task performance but also, surprisingly, at rest (i.e. in the absence of stimuli, tasks, or overt responses). Furthermore, breakdown of activity coherence at rest, even in regions of the brain that are structurally intact, correlates with behavioral deficits and their recovery after injury. Breakdown of functional connectivity appears to occur not just after local injury but also in other conditions that affect large-scale neural communication. SUMMARY: A network perspective is fundamental to appreciating the pathophysiology of brain injury at the systems level and the underlying mechanisms of recovery, and for developing novel strategies of rehabilitation.
综述目的:基础神经科学和转化神经科学研究结果表明,正常脑功能依赖于分布式脑网络内的活动同步。这一结论提示了一种关于脑损伤如何导致行为缺陷的观点,该观点不同于传统的定位主义观点。 最新发现:新型功能神经成像方法表明,大规模网络中的连贯活动不仅在任务执行期间存在,而且令人惊讶的是,在静息状态下(即没有刺激、任务或明显反应时)也存在。此外,即使在结构完整的脑区,静息状态下活动连贯性的破坏也与行为缺陷及其损伤后的恢复相关。功能连接的破坏似乎不仅发生在局部损伤后,也发生在其他影响大规模神经通讯的情况下。 总结:网络视角对于理解系统层面脑损伤的病理生理学和恢复的潜在机制,以及开发新的康复策略至关重要。
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