A fully automatic photogrammetric system design using a 1.3 MP web camera to determine EEG electrode positions

G. Şengül, U. Baysal
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Abstract

In this study a fully automatic fotogrammetric system is designed to determine the EEG electrode positions in 3D. The proposed system uses a 1.3 MP web camera rotating over the subject's head. The camera is driven by a step motor. The camera takes photos in every 7.20 angles during the rotation. In order to realize full automation, electrodes are labeled by colored circular markers and an electrode identification algorithm is develeoped for full automation. The proposed method is tested by using a realistic head phantom carrying 25 electrodes. The positions of the test electrodes are also measured by a conventional 3-D digitizer. The measurements are repeated 3 times for repeatibility purposes. It is found that 3-d digitizer localizes the electrodes with an average error of 8.46 mm, 7.63 mm and 8.32 mm, while the proposed system localizes the electrodes with an average error of 1.76 mm, 1.42 mm and 1.53 mm.
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全自动摄影测量系统设计,采用1.3 MP网络摄像头确定脑电电极位置
本文设计了一种全自动摄影测量系统,用于脑电电极的三维定位。该系统使用一个130万像素的网络摄像头,在被摄者的头上旋转。照相机由步进电机驱动。相机在旋转过程中以7.20个角度拍摄照片。为了实现全自动化,采用彩色圆形标记对电极进行标记,并开发了一种全自动化电极识别算法。该方法通过一个带有25个电极的真实头部幻影进行了测试。测试电极的位置也由传统的三维数字化仪测量。为了重复,测量重复3次。研究发现,三维数字化仪对电极的定位平均误差分别为8.46 mm、7.63 mm和8.32 mm,而所提出的系统对电极的定位平均误差分别为1.76 mm、1.42 mm和1.53 mm。
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