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N3-MEA Probes: Scooping Neuronal Networks

机译:N3-MEA探头:挖出神经网络

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摘要

In the current work, we introduce a brand new line of versatile, flexible, and multifunctional MEA probes, the so-called Nano Neuro Net, or N3-MEAs. Material choice, dimensions, and room for further upgrade, were carefully considered when designing such probes in order to cover the widest application range possible. Proof of the operation principle of these novel probes is shown in the manuscript via the recording of extracellular signals, such as action potentials and local field potentials from cardiac cells and retinal ganglion cells of the heart tissue and eye respectively. Reasonably large signal to noise ratio (SNR) combined with effortless operation of the devices, mechanical and chemical stability, multifunctionality provide, in our opinion, an unprecedented blend. We show successful recordings of (1) action potentials from heart tissue with a SNR up to 13.2; (2) spontaneous activity of retinal ganglion cells with a SNR up to 12.8; and (3) local field potentials with an ERG-like waveform, as well as spiking responses of the retina to light stimulation. The results reveal not only the multi-functionality of these N3-MEAs, but high quality recordings of electrogenic tissues.
机译:在当前的工作中,我们介绍了一条全新的,多功能,灵活和多功能的MEA探针系列,即所谓的Nano Neuro Net或N 3 -MEAs。在设计此类探头时,要仔细考虑材料的选择,尺寸以及进一步升级的空间,以覆盖可能的最大应用范围。通过记录细胞外信号,例如分别来自心脏组织和眼睛的心脏细胞和视网膜神经节细胞的动作电位和局部场电位,可以证明这些新型探针的工作原理。在我们看来,合理的大信噪比(SNR)与设备的轻松操作,机械和化学稳定性以及多功能性相结合,提供了前所未有的融合。我们展示了(1)来自心脏组织的动作电位的成功记录,信噪比高达13.2; (2)视网膜神经节细胞的自发活动,信噪比高达12.8; (3)具有类似ERG波形的局部电场电势,以及视网膜对光刺激的尖峰响应。结果不仅揭示了这些N 3 -MEA的多功能性,还揭示了电组织的高质量记录。

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