A Memristor-Inspired Computation for Epileptiform Signals in Spheroids
Ríos, Iván Díez de los, Ephraim, John Wesley, Palazzolo, Gemma, Serrano-Gotarredona, Teresa, Panuccio, Gabriella, Linares-Barranco, Bernabé
–arXiv.org Artificial Intelligence
In this paper we present a memristor-inspired computational method for obtaining a type of running spectrogram or fingerprint of epileptiform activity generated by rodent hippocampal spheroids. It can be used to compute on the fly and with low computational cost an alert-level signal for epileptiform events onset. Here, we describe the computational method behind this fingerprint technique and illustrate it using epileptiform events recorded from hippocampal spheroids using a microelectrode array system.
arXiv.org Artificial Intelligence
Jul-10-2023
- Country:
- Asia > Taiwan (0.04)
- Europe
- North America > United States
- District of Columbia > Washington (0.04)
- Genre:
- Research Report (0.50)
- Industry:
- Health & Medicine > Therapeutic Area > Neurology (1.00)
- Technology: