首页> 外文会议>Symposium on Biomicroelectromechanical Systems(BioMEMS); 20030422-20030425; San Francisco,CA; US >Electric Field-Assisted Positioning of Neurons on Pt Microelectrode Arrays
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Electric Field-Assisted Positioning of Neurons on Pt Microelectrode Arrays

机译:Pt微电极阵列上神经元的电场辅助定位

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Characterization of electrical activity of hdividual neurons is the fundamental step in understanding the functioning of the nervous system. Single cell electrical activity at various stages of cell development is essential to accurately determine in in-vivo conditions the position of a cell based on the procured electrical activity. Understanding memory formation and development translates to changes in the electrical activity of individual neurons. Hence, there is an enormous need to develop novel ways for isolating and positioning individual neurons over single recording sites. To this end, we used a 3x3 multiple microelectrode array system to spatially arrange neurons by applying a gradient AC field. We characterized the electric field distribution inside our test platform by using two dimensional finite element modeling (FEM) and determined the location of neurons over the electrode array. Dielectrophoretic AC fields were utilized to separate the neurons from the glial cells and to position the neurons over the electrodes. The neurons were obtained from 0-2-day-old rat (Sprague-Dawley) pups. The technique of using electric fields to achieve single neuron patterning has implications in neural engineering, elucidating a new and simpler method to develop and study neuronal activity as compared to conventional microelectrode array techniques.
机译:肢体神经元电活动的表征是理解神经系统功能的基本步骤。在细胞发育的各个阶段,单细胞电活动对于根据获取的电活动准确确定体内条件下的细胞位置至关重要。了解记忆的形成和发展可转化为单个神经元电活动的变化。因此,迫切需要开发用于在单个记录位点上分离和定位单个神经元的新颖方法。为此,我们使用3x3多微电极阵列系统通过施加梯度交流电场在空间上排列神经元。我们通过使用二维有限元建模(FEM)来表征测试平台内部的电场分布,并确定神经元在电极阵列上的位置。介电交流电场用于将神经元与神经胶质细胞分开,并将神经元定位在电极上。从0-2日龄的大鼠(Sprague-Dawley)幼犬获得神经元。使用电场实现单个神经元模式的技术在神经工程中具有重要意义,与传统的微电极阵列技术相比,它阐明了一种开发和研究神经元活动的新的更简单的方法。

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