Follow
Sho Shirasaka
Sho Shirasaka
Graduate School of Information Science and Technology, Osaka University
Verified email at ist.osaka-u.ac.jp - Homepage
Title
Cited by
Cited by
Year
Phase-amplitude reduction of transient dynamics far from attractors for limit-cycling systems
S Shirasaka, W Kurebayashi, H Nakao
Chaos: An Interdisciplinary Journal of Nonlinear Science 27 (2), 2017
882017
Phase reduction method for strongly perturbed limit cycle oscillators
W Kurebayashi, S Shirasaka, H Nakao
Physical review letters 111 (21), 214101, 2013
652013
Phase reduction theory for hybrid nonlinear oscillators
S Shirasaka, W Kurebayashi, H Nakao
Physical Review E 95 (1), 012212, 2017
402017
Optimizing stability of mutual synchronization between a pair of limit-cycle oscillators with weak cross coupling
S Shirasaka, N Watanabe, Y Kawamura, H Nakao
Physical Review E 96 (1), 012223, 2017
222017
Optimizing mutual synchronization of rhythmic spatiotemporal patterns in reaction-diffusion systems
Y Kawamura, S Shirasaka, T Yanagita, H Nakao
Physical Review E 96 (1), 012224, 2017
192017
Nonlinear phase-amplitude reduction of delay-induced oscillations
K Kotani, Y Ogawa, S Shirasaka, A Akao, Y Jimbo, H Nakao
Physical Review Research 2 (3), 033106, 2020
172020
Phase-amplitude reduction of limit cycling systems
S Shirasaka, W Kurebayashi, H Nakao
The Koopman Operator in Systems and Control: Concepts, Methodologies, and …, 2020
142020
Optimization of linear and nonlinear interaction schemes for stable synchronization of weakly coupled limit-cycle oscillators
N Watanabe, Y Kato, S Shirasaka, H Nakao
Physical Review E 100 (4), 042205, 2019
132019
A criterion for timescale decomposition of external inputs for generalized phase reduction of limit-cycle oscillators
W Kurebayashi, S Shirasaka, H Nakao
Nonlinear Theory and Its Applications, IEICE 6 (2), 171-180, 2015
132015
Spatiotemporal model for FRET networks with multiple donors and acceptors: multicomponent exponential decay derived from the master equation
M Nakagawa, Y Miyata, N Tate, T Nishimura, S Shimomura, S Shirasaka, ...
JOSA B 38 (2), 294-299, 2021
82021
Phase reduction of strongly coupled limit-cycle oscillators
W Kurebayashi, T Yamamoto, S Shirasaka, H Nakao
Physical Review Research 4 (4), 043176, 2022
62022
Extended dynamic mode decomposition with dictionary learning using neural ordinary differential equations
H Terao, S Shirasaka, H Suzuki
Nonlinear Theory and Its Applications, IEICE 12 (4), 626-638, 2021
52021
Optimal Parameter Selection for Kernel Dynamic Mode Decomposition
W Kurebayashi, S Shirasaka, H Nakao
Proceedings of 2016 International Symposium on Nonlinear Theory and its …, 2016
32016
Theta-gamma cross-frequency coupling enables covariance between distant brain regions
A Akao, S Shirasaka, Y Jimbo, B Ermentrout, K Kotani
arXiv preprint arXiv:1903.12155, 2019
22019
Investigation on Oscillator-Based Ising Machines
S Shirasaka
Photonic Neural Networks with Spatiotemporal Dynamics: Paradigms of …, 2023
2023
Optimizing input mask for maximum memory performance of time-delay reservoir subjected to state noise
Z Kang, S Shirasaka, H Suzuki
Nonlinear Theory and Its Applications, IEICE 12 (4), 662-673, 2021
2021
Mathematical analysis of the signal propagation characteristics of neuronal networks
Y Kobayashi, A Akao, S Shirasaka, K Kotani, Y Jimbo
Electronics and Communications in Japan 102 (5), 27-34, 2019
2019
Analysis of reservoir computing focusing on the spectrum of bistable delayed dynamical systems
I Kinoshita, A Akao, S Shirasaka, K Kotani, Y Jimbo
Electronics and Communications in Japan 102 (2), 15-20, 2019
2019
Underactuated control of coupled oscillator systems using deep reinforcement learning
M NAKASAKA, SHO SHIRASAKA, H SUZUKI
電子情報通信学会技術研究報告 118 (413 (NLP2018 96-123)), 97-100, 2019
2019
Evaluating responses of circulatory systems, sweating and pupil diameter to postural change
M Tateyama, I Kinoshita, A Akao, S Shirasaka, T Numata, H Sato, Y Jimbo, ...
IEEJ Transactions on Electronics, Information and Systems 138 (9), 1141-1147, 2018
2018
The system can't perform the operation now. Try again later.
Articles 1–20