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Author Spotlight: Advancing Large-Scale Neural Dynamics Through HD-MEA Technology
Published on: March 8, 2024
Multi-neuronal activity and functional connectivity in cell assemblies
Yasser Roudi1, Benjamin Dunn2, John Hertz3
1Kavli Institute & Centre for Neural Computation, NTNU, Trondheim, Norway; Nordita, KTH Royal Institute of Technology and Stockholm University, Stockholm, Sweden.
Abstract:
Our ability to collect large amounts of data from many cells has been paralleled by the development of powerful statistical models for extracting information from this data. Here we discuss how the activity of cell assemblies can be analyzed using these models, focusing on the generalized linear models and the maximum entropy models and describing a number of recent studies that employ these tools for analyzing multi-neuronal activity. We show results from simulations comparing inferred functional connectivity, pairwise correlations and the real synaptic connections in simulated networks demonstrating the power of statistical models in inferring functional connectivity. Further development of network reconstruction techniques based on statistical models should lead to more powerful methods of understanding functional anatomy of cell assemblies.
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