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New approach of using cortico-cortical evoked potential for functional brain evaluation

机译:使用Cortico-Cortical诱发电位功能性大脑评估的新方法

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Cortico-cortical evoked potential (CCEP) mapping is a rapidly developing method for visualizing the brain network and estimating cortical excitability. The CCEP comprises the early N1 component the occurs at 10-30 ms poststimulation, indicating anatomic connectivity, and the late N2 component that appears at 200 ms poststimulation, suggesting long-lasting effective connectivity. A later component at 200-1,000 ms poststimulation can also appear as a delayed response in some studied areas. Such delayed responses occur in areas with changed excitability, such as an epileptogenic zone. CCEP mapping has been used to examine the brain connections causally in functional systems such as the language, auditory, and visual systems as well as in anatomic regions including the frontoparietal neocortices and hippocampal limbic areas. Task-based CCEPs can be used to measure behavior. In addition to evaluations of the brain connectome, single-pulse electrical stimulation (SPES) can reflect cortical excitability, and so it could be used to predict a seizure onset zone. CCEP brain mapping and SPES investigations could be applied both extraoperatively and intraoperatively. These underused electrophysiologic tools in basic and clinical neuroscience might be powerful methods for providing insight into measures of brain connectivity and dynamics. Analyses of CCEPs might enable us to identify causal relationships between brain areas during cortical processing, and to develop a new paradigm of effective therapeutic neuromodulation in the future.
机译:皮质皮质诱发电位(CCEP)映射是一种快速开发的方法,用于可视化脑网络和估计皮质兴奋性。 CCEP包括早期的N1分量,发生在10-30ms的后刺激,表明原子化连接和出现在&的后期N2组分。模拟200毫秒,表明持久的有效连通性。后来的200〜000毫秒的后期成分也可以在一些研究区域中显示为延迟响应。这种延迟反应发生在改变兴奋性的区域,例如癫痫区域。 CCEP映射已被用于检查功能系统中的脑连接,例如语言,听觉和视觉系统以及在包括前迁徙的新蜥蜴和海马肢体区域的解剖区域中。基于任务的CCEP可用于测量行为。除了大脑连接的评估之外,单脉冲电刺激(SPE)可以反映皮质兴奋性,因此它可用于预测癫痫发作区域。 CCEP脑映射和SPES调查可以全面和术中应用。这些未充分利用的电生理工具中的基本和临床神经科学可能是一种强大的方法,用于提供脑连接和动态的措施的洞察。 CCEP的分析可能使我们能够在皮质加工过程中识别大脑区域之间的因果关系,并在未来开发新的有效治疗性神经调节的范例。

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