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Soft transparent graphene contact lens electrodes for conformal full-cornea recording of electroretinogram

机译:柔软透明的石墨烯隐形眼镜电极,用于视网膜电图的保形全角膜记录

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Visual electrophysiology measurements are important for ophthalmic diagnostic testing. Electrodes with combined optical transparency and softness are highly desirable, and sometimes indispensable for many ocular electrophysiology measurements. Here we report the fabrication of soft graphene contact lens electrodes (GRACEs) with broad-spectrum optical transparency, and their application in conformal, full-cornea recording of electroretinography (ERG) from cynomolgus monkeys. The GRACEs give higher signal amplitude than conventional ERG electrodes in recordings of various full-field ERG responses. High-quality topographic mapping of multifocal ERG under simultaneous fundus monitoring is realized. A conformal and tight interface between the GRACEs and cornea is revealed. Neither corneal irritation nor abnormal behavior of the animals is observed after ERG measurements with GRACEs. Furthermore, spatially resolved ERG recordings on rabbits with graphene multi-electrode array reveal a stronger signal at the central cornea than the periphery. These results demonstrate the unique capabilities of the graphene-based electrodes for in vivo visual electrophysiology studies.
机译:视觉电生理测量对眼科诊断测试很重要。具有高度的光学透明性和柔软性的电极是非常需要的,有时对于许多眼电生理学测量来说是必不可少的。在这里,我们报告具有广谱光学透明性的软石墨烯隐形眼镜电极(GRACEs)的制造及其在食蟹猴的视网膜电图(ERG)的保形,全角膜记录中的应用。在记录各种全场ERG响应时,GRACE的信号幅度比常规ERG电极高。在眼底同时监测的情况下,实现了多焦点ERG的高质量地形图绘制。显示了GRACE和角膜之间的共形和紧密界面。用GRACEs进行ERG测量后,未观察到角膜刺激或动物行为异常。此外,具有石墨烯多电极阵列的兔子的空间分辨ERG记录显示中央角膜的信号强于周边。这些结果证明了基于石墨烯的电极在体内视觉电生理研究中的独特功能。

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