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MEMS-enabled multi-unit neural recording from Drosophila melanogaster

机译:果蝇(Drosophila melanogaster)支持MEMS的多单元神经记录

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Penetrating microelectrodes designed for neural recording from the tiny cephalic ganglion of Drosophila melanogaster (fruit fly) have been fabricated, characterized, and tested in-vivo. Because of the extensive genetic techniques available in Drosophila, and its ever-expanding use in neuroscience, multi-unit ensemble recordings would elucidate general neurobiological mechanisms. Mechanical simulations predicted buckling failure at 283.5 μN, which was validated by experimental results within 2%. Electrochemical characterization measured mean impedance values of 2.74 MΩ (n = 12). We demonstrate that our microfabricated electrodes are able to penetrate the fly cuticle and are capable of acquiring electroretinogram (ERG) signals from the compound eye of the fly.
机译:已经设计,设计和测试了可穿透的微电极,用于从果蝇果蝇的微小头神经节进行神经记录。由于果蝇中广泛的遗传技术及其在神经科学中的不断扩展的应用,多单元合奏录音将阐明一般的神经生物学机制。力学模拟预测屈曲破坏在283.5μN,这在2%以内的实验结果中得到了验证。电化学表征测得的平均阻抗值为2.74MΩ(n = 12)。我们证明了我们的微型电极能够穿透蝇角质层,并能够从蝇蝇的复眼中获取视网膜电图(ERG)信号。

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