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Constructing Carbon Fiber Motion-Detection Loops for Simultaneous EEG–fMRI

机译:同时进行EEG–fMRI的碳纤维运动检测环的构造

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摘要

One of the most significant impediments to high-quality EEG recorded in an MRI scanner is subject motion. Availability of motion artifact sensors can substantially improve the quality of the recorded EEG. In the study of epilepsy, it can also dramatically increase the confidence that one has in discriminating true epileptiform activity from artifact. This is due both to the reduction in artifact and the ability to visually inspect the motion sensor signals when reading the EEG, revealing whether or not head motion is present. We have previously described the use of carbon fiber loops for detecting and correcting artifact in EEG acquired simultaneously with MRI. The loops, attached to the subject’s head, are electrically insulated from the scalp. They provide a simple and direct measure of specific artifact that is contaminating the EEG, including both subject motion and residual artifact arising from magnetic field gradients applied during MRI. Our previous implementation was used together with a custom-built EEG–fMRI system that differs substantially from current commercially available EEG–fMRI systems. The present technical note extends this work, describing in more detail how to construct the carbon fiber motion-detection loops, and how to interface them with a commercially available simultaneous EEG–fMRI system. We hope that the information provided may help those wishing to utilize a motion-detection/correction solution to improve the quality of EEG recorded within an MRI scanner.
机译:MRI扫描仪记录的高质量EEG的最大障碍之一是对象运动。运动伪影传感器的可用性可以大大提高记录的脑电图的质量。在癫痫病的研究中,它还可以极大地增加人们从假象中区分真正的癫痫样活动的信心。这既是由于伪影的减少,又是由于在读取EEG时可以目视检查运动传感器信号的能力,从而揭示是否存在头部运动。先前我们已经描述了使用碳纤维环来检测和校正与MRI同时获得的EEG中的伪影。连接到受试者头部的环与头皮电绝缘。它们提供了一种简单,直接的方法来测量污染EEG的特定伪影,包括受检者运动和MRI期间施加的磁场梯度引起的残留伪影。我们先前的实现与定制的EEG-fMRI系统一起使用,该系统与当前的市售EEG-fMRI系统大不相同。本技术说明扩展了这项工作,更详细地描述了如何构造碳纤维运动检测环,以及如何将其与市售的同时EEG-fMRI系统连接。我们希望所提供的信息可以帮助那些希望利用运动检测/校正解决方案来改善MRI扫描仪中记录的脑电图质量的人。

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