Bernhardt Boris C, Bonilha Leonardo, Gross Donald W
Neuroimaging of Epilepsy Laboratory, Brain Imaging Center, Montreal Neurological Institute and Hospital, McGill University, Montreal, QC, Canada; Department of Social Neuroscience, Max Planck Institute for Human Cognitive and Brain Sciences, Leipzig, Germany.
Department of Neurology, Medical University of South Carolina, SC, USA.
Epilepsy Behav. 2015 Sep;50:162-70. doi: 10.1016/j.yebeh.2015.06.005. Epub 2015 Jul 6.
Recent years have witnessed a paradigm shift in the study and conceptualization of epilepsy, which is increasingly understood as a network-level disorder. An emblematic case is temporal lobe epilepsy (TLE), the most common drug-resistant epilepsy that is electroclinically defined as a focal epilepsy and pathologically associated with hippocampal sclerosis. In this review, we will summarize histopathological, electrophysiological, and neuroimaging evidence supporting the concept that the substrate of TLE is not limited to the hippocampus alone, but rather is broadly distributed across multiple brain regions and interconnecting white matter pathways. We will introduce basic concepts of graph theory, a formalism to quantify topological properties of complex systems that has recently been widely applied to study networks derived from brain imaging and electrophysiology. We will discuss converging graph theoretical evidence indicating that networks in TLE show marked shifts in their overall topology, providing insight into the neurobiology of TLE as a network-level disorder. Our review will conclude by discussing methodological challenges and future clinical applications of this powerful analytical approach.
近年来,癫痫的研究和概念化发生了范式转变,越来越多的人将其理解为一种网络层面的疾病。一个典型的例子是颞叶癫痫(TLE),这是最常见的耐药性癫痫,在电临床方面被定义为局灶性癫痫,在病理上与海马硬化有关。在这篇综述中,我们将总结组织病理学、电生理学和神经影像学证据,这些证据支持这样一个概念,即TLE的病变基础不仅限于海马体,而是广泛分布于多个脑区以及相互连接的白质通路。我们将介绍图论的基本概念,图论是一种用于量化复杂系统拓扑特性的形式体系,最近已被广泛应用于研究源自脑成像和电生理学的网络。我们将讨论相互印证的图论证据,这些证据表明TLE中的网络在其整体拓扑结构上有显著变化,从而深入了解TLE作为一种网络层面疾病的神经生物学机制。我们的综述将通过讨论这种强大分析方法的方法学挑战和未来临床应用来结束。