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Frontiers in Neuroscience|January 28, 2026
Optimal interphase delay in biphasic current pulses facilitates neural circuit activation induced by microstimulation in the mouse visual cortexSanta Fukuda, Yuki HayashidaBioengineering (Basel, Switzerland)|February 27, 2026
A Machine Learning-Based Decoder Framework for the Cortical Voltage-Sensitive Dye Responses to Retinal Neuromorphic Microstimulation: A Proof-of-Concept Simulation StudyKeisuke Yamada, Yuina Terakura, Santa Fukuda, et al.Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference|March 5, 2025
On the spatial synaptic propagation of excitations induced by repetitive microstimulation pulses in the mouse visual cortexSanta Fukuda, Tomohiro Nomoto, Tetsuya Yagi, et al.Journal of Neurophysiology|January 11, 2002
On the interaction between voltage-gated conductances and Ca(2+) regulation mechanisms in retinal horizontal cellsYuki Hayashida, Tetsuya YagiBiological Cybernetics|June 29, 2018
A single retinal circuit model for multiple computationsMurat Sağlam, Yuki HayashidaJournal of Neurophysiology|October 16, 2004
Dopamine receptor activation can reduce voltage-gated Na+ current by modulating both entry into and recovery from inactivationYuki Hayashida, Andrew T IshidaCognitive Neurodynamics|November 13, 2008
A retinal circuit model accounting for wide-field amacrine cellsMurat Sağlam, Yuki Hayashida, Nobuki MurayamaAnnual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference|October 11, 2013
Interfacing neurons through the patch membrane pierced with single-walled carbon nanotubesYuki Hayashida, Tomohiro Kinoshita, Tamami MotomuraVision Research|December 8, 2004
Temporal properties of retinal ganglion cell responses to local transretinal current stimuli in the frog retinaLiming Li, Yuki Hayashida, Tetsuya YagiAnnual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference|January 19, 2012
A new method for localizing the sources of correlated cross-frequency oscillations in human brainsHiroaki Tanaka, Yuki Hayashida, Tomohiko Igasaki, et al.Pageof 4