标题: | 使用重叠球体正向模型以及阶层搜寻光束构成进行脑电波讯号源定位 EEG Source Estimation using Overlapping-Sphere Forward Model and Hierarchical-Search Beamforming |
作者: | 杨仲凯 Zhong-Kai Yang 陈永升 Yong-Sheng Chen 资讯科学与工程研究所 |
关键字: | 脑电波;讯号源定位;重叠球体;正向模型;阶层搜寻;光束构成;EEG;Source Estimation;Overlapping-Sphere;Forward Model;Hierarchical-Search;Beamforming |
公开日期: | 2004 |
摘要: | 脑,是人体当中最重要且复杂的器官,对于脑功能的探索,是目前最热门的研究课题之一。脑电波仪是常被用来进行脑功能研究的工具之一,因为它具有相当高的取样频率以及低廉的价位。在本篇论文中,我们将会提出一个准确且快速的脑电波讯号源定位方法,包括了正向模型的计算(针对已知的讯号源计算脑电波),以及如何去解决反向问题(利用脑电波来进行讯号源定位)。 在所提出的正向模型中,我们针对每个脑电波仪感应器找出适合的重叠球体,以增加正向模型的准确度。并且,重叠球体只需要使用多层球体结构即可很快速的计算出来,而不需要去计算相当耗时的边界元素模型。基于所提出的正向模型,我们使用阶层搜寻光束构成来解决反向问题。经由最大化脑电波的活动状态和控制状态的强度对比,可以大幅地增加讯号源定位结果的准确度。并且,在脑空间中搜寻讯号源时我们使用阶层搜寻而非全域搜寻,亦能有效地降低解决反向问题的时间。 根据假体实验以及视觉刺激实验结果,确认了我们所提出的方法之准确性以及便利性。我们所提出的讯号源定位法可以有效地被使用在无需磁振造影资料的情形,例如进行基础脑科学的研究,或者脑机介面的开发。 Brain is the most important and complicated apparatus of human beings. EEG has been widely applied in functional brain studies due to its high temporal resolution and low cost. In this work, we focus on the development of an accurate and efficient EEG forward model as well as the inverse solution for neuronal source estimation from the EEG measurements. Our forward model successfully gains its accuracy by fitting an overlapping sphere for each EEG sensor. The computation of the overlapping sphere requires only the multi-shell geometry, instead of boundary element method, thus the proposed forward model is easy to compute. Based on the proposed forward model, the beamforming technique is applied to calculate the distributed sources in the brain space. We maximize the power contrast between active state and control state of EEG recorded data to improve the accuracy of inverse solution. Hierarchical search in the solution space is applied to save the amount of computation by searching grid point level by level instead of searching the whole brain space. According to our experiments using phantom data and visual-evoked potential data, the proposed forward model and inverse solution can efficiently and accurately estimate the source of brain activation. A quick and reliable source localization technique for EEG is successfully developed which can be applied on applications when MRI is not available, such as fundamental brain research and brain-computer interface. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT009217596 http://hdl.handle.net/11536/74002 |
显示于类别: | Thesis |
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