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Simplest transistor-based chaotic circuit with extreme events: statistical characterization, synchronization, and analogy with interictal spikes

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https://zenodo.org/record/14201937
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These are experimental time series for an electronic model of neural dynamics consisting of a dual-transistor chaotic oscillator (Minati-Frasca spiking circuit). They are provided to support the replication of the results reported in the associated publication, as well as any further public-domain academic research in the field of neural dynamics, nonlinear electronic circuits, and related aspects, in compliance with the specified license terms and all applicable legal clauses. The following reference must be cited when using these data: Kamdjeu Kengne L, Folifack Signing VR, Rossi Sebastiano D, Wafo Tekam RB, Ngamsa Tegnitsap JV, Zhao M, Bao Q, Kengne J, Valdes-Sosa PA, Minati L, Simplest transistor-based chaotic circuit with extreme events: Statistical characterization, synchronization, and analogy with interictal spikes, Chaos, Solitons and Fractals 191 (2025) 115894, https://doi.org/10.1016/j.chaos.2024.115894. L.M. gratefully acknowledges the support of the “Hundred Talents” program of the University of Electronic Science and Technology of China, the “Outstanding Young Talents Program (Overseas)” of the National Natural Science Foundation of China, and the talent programs of the Sichuan province and Chengdu municipality. This work has also been supported by the Chengdu Science and Technology Bureau Program under Grant 2022GH02-00042-HZ and the CNS program of UESTC No. Y0301902610100201.
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2025-01-05
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