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An electrically resistive sheet of glial cells for amplifying signals of neuronal extracellular recordings

机译:胶质细胞的电阻片用于放大神经元细胞外记录的信号

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摘要

Electrical signals of neuronal cells can be recorded non-invasively and with a high degree of temporal resolution using multielectrode arrays (MEAs). However, signals that are recorded with these devices are small, usually 0.01%–0.1% of intracellular recordings. Here, we show that the amplitude of neuronal signals recorded with MEA devices can be amplified by covering neuronal networks with an electrically resistive sheet. The resistive sheet used in this study is a monolayer of glial cells, supportive cells in the brain. The glial cells were grown on a collagen-gel film that is permeable to oxygen and other nutrients. The impedance of the glial sheet was measured by electrochemical impedance spectroscopy, and equivalent circuit simulations were performed to theoretically investigate the effect of covering the neurons with such a resistive sheet. Finally, the effect of the resistive glial sheet was confirmed experimentally, showing a 6-fold increase in neuronal signals. This technique feasibly amplifies signals of MEA recordings.
机译:可以使用多电极阵列(MEA)以非侵入性方式并以高度的时间分辨率记录神经元细胞的电信号。但是,用这些设备记录的信号很小,通常占细胞内记录的0.01%–0.1%。在这里,我们表明用MEA设备记录的神经元信号的振幅可以通过用电阻片覆盖神经元网络来放大。本研究中使用的电阻片是单层神经胶质细胞,即大脑中的支持细胞。神经胶质细胞生长在可渗透氧气和其他养分的胶原蛋白凝胶薄膜上。通过电化学阻抗谱法测量神经胶质片的阻抗,并进行等效电路仿真以从理论上研究用这种电阻片覆盖神经元的效果。最后,通过实验证实了抗性神经胶质片的作用,显示神经元信号增加了6倍。该技术切实可行地放大了MEA记录的信号。

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