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智能手机脑扫描仪:一种便携式实时神经影像系统。

The smartphone brain scanner: a portable real-time neuroimaging system.

机构信息

Section for Cognitive Systems, DTU Compute, Technical University of Denmark, Kgs. Lyngby, Denmark.

出版信息

PLoS One. 2014 Feb 5;9(2):e86733. doi: 10.1371/journal.pone.0086733. eCollection 2014.

Abstract

Combining low-cost wireless EEG sensors with smartphones offers novel opportunities for mobile brain imaging in an everyday context. Here we present the technical details and validation of a framework for building multi-platform, portable EEG applications with real-time 3D source reconstruction. The system--Smartphone Brain Scanner--combines an off-the-shelf neuroheadset or EEG cap with a smartphone or tablet, and as such represents the first fully portable system for real-time 3D EEG imaging. We discuss the benefits and challenges, including technical limitations as well as details of real-time reconstruction of 3D images of brain activity. We present examples of brain activity captured in a simple experiment involving imagined finger tapping, which shows that the acquired signal in a relevant brain region is similar to that obtained with standard EEG lab equipment. Although the quality of the signal in a mobile solution using an off-the-shelf consumer neuroheadset is lower than the signal obtained using high-density standard EEG equipment, we propose mobile application development may offset the disadvantages and provide completely new opportunities for neuroimaging in natural settings.

摘要

将低成本无线 EEG 传感器与智能手机相结合,为日常环境中的移动脑成像提供了新的机会。在这里,我们介绍了构建具有实时 3D 源重建功能的多平台、便携式 EEG 应用程序的框架的技术细节和验证。该系统——智能手机脑扫描仪——将市售的神经头带或 EEG 帽与智能手机或平板电脑相结合,因此代表了第一个用于实时 3D EEG 成像的全便携式系统。我们讨论了其优点和挑战,包括技术限制以及实时重建脑活动 3D 图像的细节。我们展示了在一个简单的想象手指敲击实验中捕获的脑活动示例,该示例表明,在相关脑区中获取的信号与使用标准 EEG 实验室设备获得的信号相似。尽管使用现成的消费神经头带的移动解决方案中的信号质量低于使用高密度标准 EEG 设备获得的信号质量,但我们提出移动应用程序开发可能会弥补这些劣势,并为自然环境中的神经成像提供全新的机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e40/3914802/24d407b0e40e/pone.0086733.g001.jpg

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