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Three-Dimensional Microelectrodes Array Based on Vertically Stacked Beads For Mapping Neurons' Electrophysiological Activity

机译:基于垂直堆叠珠子的三维微电极阵列,用于映射神经元电生理活性

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Understanding how the brain process and store information is one of the most important quest in modern science. To this aim, in vitro neuronal models still represent a relevant approach, and a continuous improvement in the in-vitro methodologies for monitoring neurons electrical activity is in fact an important requirement. Moreover, with the advent of novel approaches in the development of in vitro 3D neuronal models, assessing the neural connectivity and monitoring the electrical activity in such complex cellular structures has lately become an important research objective that requires innovative platforms and fabrication approaches. In this preliminary work, we report on a customizable technique for developing 3D-vertical microelectrodes on standard planar MEAs in order to obtain system-on-a-chip platforms for neurophysiological applications. The proposed 3D-vertical microelectrodes are able to reliably record the electrical activity from different layers within a 3D neuronal culture, thus allowing a better understanding of the neurons electrical interaction at the three-dimensional level.
机译:了解大脑是如何处理和存储信息,是现代科学中最重要的任务之一。为了达到这个目的,在体外神经元模型仍然代表在体外的方法监测神经元电活动实际上是一个重要的要求有关做法,并持续改进。此外,新颖的来临接近体外三维神经元模型的开发,评估神经连接和监控这种复杂的细胞结构的电活动近来成为一个重要的研究目标,需要创新的平台和制造方法。在这个初步的工作,我们在制定标准的平面MEA的三维垂直微电极,以获得系统芯片平台的神经生理学应用的可定制的技术报告。所提出的3D-垂直微电极能够可靠地记录在3D神经元培养物中从不同的层中的电活动,从而允许更好的在三维电平中的神经元的理解电相互作用。

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