Characterization of Early Cortical Neural Network Development in Multiwell Microelectrode Array Plates.
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ABSTRACT: We examined neural network ontogeny using microelectrode array (MEA) recordings made in multiwell MEA (mwMEA) plates over the first 12 days in vitro (DIV). In primary cortical cultures, action potential spiking activity developed rapidly between DIV 5 and 12. Spiking was sporadic and unorganized at early DIV, and became progressively more organized with time, with bursting parameters, synchrony, and network bursting increasing between DIV 5 and 12. We selected 12 features to describe network activity; principal components analysis using these features demonstrated segregation of data by age at both the well and plate levels. Using random forest classifiers and support vector machines, we demonstrated that four features (coefficient of variation [CV] of within-burst interspike interval, CV
SUBMITTER: Cotterill E
PROVIDER: S-EPMC4904353 | biostudies-literature | 2016 Jun
REPOSITORIES: biostudies-literature
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