首页> 美国卫生研究院文献>Frontiers in Neuroscience >Photogrammetry-Based Head Digitization for Rapid and Accurate Localization of EEG Electrodes and MEG Fiducial Markers Using a Single Digital SLR Camera
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Photogrammetry-Based Head Digitization for Rapid and Accurate Localization of EEG Electrodes and MEG Fiducial Markers Using a Single Digital SLR Camera

机译:基于摄影测量的头部数字化使用单个数字SLR相机快速准确地定位EEG电极和MEG基准标记

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摘要

The performance of EEG source reconstruction has benefited from the increasing use of advanced head modeling techniques that take advantage of MRI together with the precise positions of the recording electrodes. The prevailing technique for registering EEG electrode coordinates involves electromagnetic digitization. However, the procedure adds several minutes to experiment preparation and typical digitizers may not be accurate enough for optimal source reconstruction performance (Dalal et al., ). Here, we present a rapid, accurate, and cost-effective alternative method to register EEG electrode positions, using a single digital SLR camera, photogrammetry software, and computer vision techniques implemented in our open-source toolbox, janus3D. Our approach uses photogrammetry to construct 3D models from multiple photographs of the participant's head wearing the EEG electrode cap. Electrodes are detected automatically or semi-automatically using a template. The rigid facial features from these photo-based models are then surface-matched to MRI-based head reconstructions to facilitate coregistration to MRI space. This method yields a final electrode coregistration error of 0.8 mm, while a standard technique using an electromagnetic digitizer yielded an error of 6.1 mm. The technique furthermore reduces preparation time, and could be extended to a multi-camera array, which would make the procedure virtually instantaneous. In addition to EEG, the technique could likewise capture the position of the fiducial markers used in magnetoencephalography systems to register head position.
机译:脑电源重建的性能得益于越来越多的先进头部建模技术的使用,这些技术利用了MRI和记录电极的精确位置。记录EEG电极坐标的主要技术涉及电磁数字化。但是,该过程需要花几分钟的时间进行实验准备,典型的数字化仪可能不够精确,无法实现最佳的信号源重建性能(Dalal等,)。在这里,我们提供了一种快速,准确且经济高效的替代方法,可使用单个数字SLR相机,摄影测量软件以及在我们的开源工具箱janus3D中实现的计算机视觉技术来注册EEG电极位置。我们的方法是使用摄影测量法从戴有EEG电极帽的参与者头部的多张照片中构建3D模型。使用模板可以自动或半自动检测电极。然后,将这些基于照片的模型中的刚性面部特征与基于MRI的头部重建进行表面匹配,以促进对MRI空间的配准。该方法产生的最终电极对位误差为0.8 mm,而使用电磁数字化仪的标准技术则产生了6.1 mm的误差。该技术进一步减少了准备时间,并且可以扩展到多摄像机阵列,这将使该过程实际上是瞬时的。除脑电图外,该技术还可以捕获脑磁图系统中用于标记头部位置的基准标记的位置。

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