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A practical method for quickly determining electrode positions in high-density EEG studies

机译:在高密度脑电图研究中快速确定电极位置的实用方法

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摘要

This report describes a simple and practical method for determining electrode positions in high-density EEG studies. This method reduces the number of electrodes for which accurate three-dimensional location must be measured, thus minimizing experimental set-up time and the possibility of digitization error. For each electrode cap, a reference data set is first established by placing the cap on a reference head and digitizing the 3-D position of each channel. A set of control channels are pre-selected that should be adequately distributed over the cap. A simple choice could be the standard 19 channels of the International 10-20 system or their closest substitutes. In a real experiment, only the 3-D positions of these control channels need to be measured and the position of each of the remaining channels are calculated from the position data of the same channels in the reference data set using a local transformation determined by the nearest three or four pairs of control channels. Six BioSemi ActiveTwo caps of different size and channel numbers were used to evaluate the method. Results show that the mean prediction error is about 2. mm and is comparable with the residual uncertainty in direct position measurement using a Polhemus digitizer.
机译:该报告介绍了一种简单实用的方法,可用于确定高密度脑电图研究中的电极位置。这种方法减少了必须测量精确的三维位置的电极的数量,从而最大程度地减少了实验设置时间和数字化误差的可能性。对于每个电极帽,首先通过将电极帽放在参考头上并数字化每个通道的3D位置来建立参考数据集。预先选择了一组控制通道,这些通道应在瓶盖上充分分配。一个简单的选择可能是国际10-20系统的标准19频道或它们的最接近替代品。在实际实验中,仅需要测量这些控制通道的3-D位置,并使用由参考数据集中确定的局部变换从参考数据集中相同通道的位置数据中计算出其余每个通道的位置。最接近的三或四对控制通道。使用六个大小和通道号不同的BioSemi ActiveTwo瓶盖评估该方法。结果表明,平均预测误差约为2 mm,与使用Polhemus数字化仪直接测量位置时的残留不确定度相当。

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