首页> 外文会议>Conference on Optical and Quantum Sensing and Precision Metrology >Kernel Flux: a whole-head 432-magnetometer optically-pumped magnetoencephalography (OP-MEG) system for brain activity imaging during natural human experiences
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Kernel Flux: a whole-head 432-magnetometer optically-pumped magnetoencephalography (OP-MEG) system for brain activity imaging during natural human experiences

机译:内核助焊剂:在自然人体验期间,用于脑活动成像的全头432磁力计光学泵浦磁性脑图(OP-MEG)系统

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MEG based on optically-pumped magnetometry (OP-MEG) operates with miniaturized, wearable insulation, in contrast to massive cryogenic dewars for SQUID-MEG, and allows placement of the sensors close to the scalp. This allows more natural head motion during data recording and localized signal quality comparable to, or surpassing, SQUID-MEG. However no OP-MEG system to date has offered full-head coverage with dense sensor packing, and existing systems - as with SQUID-MEG -require the subject to be sealed in a multilayer, passively-shielded vault in order to suppress ambient magnetic fields. Here we present Kernel Flux, which overcomes these limitations. Kernel Flux uses a collection of alkali vapor sensors in a unique array architecture to directly detect the magnetic fields generated by collective neural activity in the brain, while allowing for comfortable head motion. Each Kernel Flux OP-MEG system was designed from the ground up to work as an integrated system optimized around the user's experience, with relevance to natural home and office contexts.
机译:基于光学泵浦的磁力测量(OP-MEG)的MEG采用小型化,可穿戴绝缘材料,与SQUID-MEG的大规模低温露珠相比,并允许将传感器靠近头皮的放置。这允许在数据记录和局部信号质量期间进行更多的自然头部运动,可比或超越鱿鱼米。然而,迄今为止没有op-meg系统提供了具有密集传感器包装的全头覆盖度,以及现有的系统 - 与鱿鱼梅格 - 重新填写在多层,被动屏蔽的保险库中密封的主题,以抑制环境磁场。在这里,我们呈现内核助焊剂,克服了这些限制。内核助焊剂在唯一的阵列架构中使用碱蒸气传感器的集合,直接检测大脑中集体神经活动产生的磁场,同时允许舒适的头部运动。每个内核磁共线OP-MEG系统由地下设计,以作为围绕用户体验优化的集成系统,与自然家庭和办公室背景相关。

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