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Pre-seizure state identified by diffuse optical tomography

机译:弥散性光学层析成像确定发作前状态

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摘要

In epilepsy it has been challenging to detect early changes in brain activity that occurs prior to seizure onset and to map their origin and evolution for possible intervention. Here we demonstrate using a rat model of generalized epilepsy that diffuse optical tomography (DOT) provides a unique functional neuroimaging modality for noninvasively and continuously tracking such brain activities with high spatiotemporal resolution. We detected early hemodynamic responses with heterogeneous patterns, along with intracranial electroencephalogram gamma power changes, several minutes preceding the electroencephalographic seizure onset, supporting the presence of a “pre-seizure” state. We also observed the decoupling between local hemodynamic and neural activities. We found widespread hemodynamic changes evolving from local regions of the bilateral cortex and thalamus to the entire brain, indicating that the onset of generalized seizures may originate locally rather than diffusely. Together, these findings suggest DOT represents a powerful tool for mapping early seizure onset and propagation pathways.
机译:在癫痫中,检测癫痫发作之前发生的脑活动的早期变化并绘制其起源和进化以进行可能的干预一直是一项挑战。在这里,我们证明了使用广义癫痫的大鼠模型,弥漫性光学断层扫描(DOT)提供了独特的功能性神经影像学方式,可以无创地连续跟踪具有高时空分辨率的此类大脑活动。在脑电图发作前几分钟,我们检测到了早期的血流动力学反应,表现为异质性模式,以及颅内脑电图γ功率变化,支持“癫痫发作前”状态的存在。我们还观察到局部血液动力学和神经活动之间的脱钩。我们发现广泛的血液动力学变化从双侧皮质和丘脑的局部区域发展到整个大脑,这表明广泛性癫痫发作可能起源于局部而不是弥漫性。总之,这些发现表明,DOT是绘制早期癫痫发作和传播途径的有力工具。

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