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Extracellular Potential Recording of Patterned Rat Olfactory Bulb Neuronal Network Using Planar Microelectrode Arrays

机译:使用平面微电极阵列的图案大鼠嗅球内部网络的细胞外潜在记录

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The olfactory bulb is an important structure in olfactory information processing. Exploring electrophysiological characteristics of dissected olfactory bulb neuron in vitro is helpful to improving the understanding of the mechanism of the olfactory information processing. In this work, a novel neural chip was developed based on the combination of the microelectrode array and patterned microstructures with the advantages of controllable growth of neurons and long time potential recording. Topographical patterning was used to define position of neuron soma and to guide the neurite outgrowth. A cell culture device with micro wells and micro trenches was fabricated in polydimethylsiloxane using soft lithography. The olfactory bulb neurons were cultured on the cell culture device. At day 8 of the in vitro culture, the device with patterned neuronal network was put upside down on the top surface of a commercially available microelectrode array chip. The micro wells were aligned letting neurons sit on the electrodes. Spike signals of neurons were recorded when the neuronal network was subjected to 1 mM-glutamate stimuli. This convenient method by which the olfactory bulb neural chip was fabricated is feasible for extracellular potential recording of patterned neurons, and may be useful in the further studies of olfactory information processing.
机译:嗅灯泡是嗅觉信息处理中的重要结构。探讨解剖嗅灯泡神经元的电生理特征在体外有助于改善对嗅觉信息处理机制的理解。在这项工作中,基于微电极阵列和图案化微结构的组合开发了一种新的神经芯片,其具有可控制的神经元和长时间电位记录的优点。地形图案化用于定义神经元SOMA的位置,并引导神经态过多。使用软光刻在聚二甲基硅氧烷中制造具有微孔和微沟的细胞培养装置。嗅灯泡神经元在细胞培养装置上培养。在体外培养的第8天,具有图案化的神经网络的装置在市售的微电极阵列芯片的顶表面上倒置。微孔对齐,让神经元坐在电极上。当经过1mm-谷氨酸刺激的神经元网络时,记录神经元的尖峰信号。这种方便的方法,由此制造嗅灯泡神经芯片的方法对于图案化神经元的细胞外潜在记录是可行的,并且可用于嗅觉信息处理的进一步研究。

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