Pfurtscheller G, Andrew C
Department of Medical Informatics, Ludwig Boltzmann Institute for Medical Informatics and Neuroinformatics, Technical University Graz, Austria.
J Clin Neurophysiol. 1999 Nov;16(6):512-9. doi: 10.1097/00004691-199911000-00003.
Event-related calculation of band power changes can be used to quantify event-related desynchronization, event-related synchronization, and event-related coherence (ERCoh). It is shown that in the case of a motor task especially, the ERCoh time course depends on the type of EEG derivation used, whereby referenced EEG data can result in a bilateral coherence increase, although both hemispheres generate independent sensorimotor rhythms. It is further shown that not only Rolandic mu rhythms but also central beta rhythms display a lack of interhemispheric linear phase coupling.
与事件相关的频段功率变化计算可用于量化事件相关去同步化、事件相关同步化和事件相关相干性(ERCoh)。结果表明,尤其是在运动任务的情况下,ERCoh时间进程取决于所使用的脑电图导联类型,由此参考脑电图数据可能会导致双侧相干性增加,尽管两个半球产生独立的感觉运动节律。进一步表明,不仅罗兰区μ节律,而且中央β节律也显示出半球间缺乏线性相位耦合。