2021Advanced BiologyRequires access

Microelectrode Arrays: Electrophysiological Phenotype Characterization of Human iPSC‐Derived Neuronal Cell Lines by Means of High‐Density Microelectrode Arrays (Adv. Biology 3/2021)

Silvia Ronchi, Alessio Paolo Buccino, Gustavo Prack, Sreedhar Saseendran Kumar, Manuel Schröter, Michele Fiscella, Andreas Hierlemann

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Abstract

In article number 2000223, Silvia Ronchi, Michele Fiscella, and co-workers show neurons plated on a high-density microelectrode array. The small electrode size and the tight spacing between the 26 400 electrodes enable functional extracellular electrophysiological characterization of neurons across scales, from subcellular-resolution features, like axons and dendrites, through individual neuronal cells to entire networks. Image credits: M. Oeggerli

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What this paper is about

In article number 2000223, Silvia Ronchi, Michele Fiscella, and co-workers show neurons plated on a high-density microelectrode array. The small electrode size and the tight spacing between the 26 400 electrodes enable functional extracellular electrophysiological characterization of neurons across scales, from subcellular-resolution features, like axons and dendrites, through individual neuronal cells to entire networks. Image credits: M. Oeggerli

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Available abstract

In article number 2000223, Silvia Ronchi, Michele Fiscella, and co-workers show neurons plated on a high-density microelectrode array. The small electrode size and the tight spacing between the 26 400 electrodes enable functional extracellular electrophysiological characterization of neurons across scales, from subcellular-resolution features, like axons and dendrites, through individual neuronal cells to entire networks. Image credits: M. Oeggerli

Key concepts: Microelectrode, Electrophysiology, Multielectrode array, Biology, Neuroscience, Phenotype, Electrode, Extracellular

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Microelectrode Arrays: Electrophysiological Phenotype Characterization of Human iPSC‐Derived Neuronal Cell Lines by Means of High‐Density Microelectrode Arrays (Adv. Biology 3/2021) — Research Paper | ScholarLens