[1] Optimal control of spatial diseases spreading in networked reaction-diffusion systems[J]. Physics Reports, 2025, 1111: 1-64.
[2] Vegetation dynamics: Modeling, mechanisms, and emergent properties[J]. Physics Reports, 2025, 1145: 1-87.
[3] Increased Drought Impacts on Vegetation Productivity in Drylands Under Climate Change[J]. Geophysical Research Letters, 2025, 52(13): e2025GL115616.
[4] Multistability shifts in an aird vegetation system with nonlocal water absorption effect[J]. Journal of Mathematical Biology, 2025, 91(2): 17.
[5] Early predictor for the onset of chaotic critical transitions in logistic map systems[J]. Nonlinear Dynamics, 2025, 114(1): 32.
[6] Optimal control of Alzheimer's disease model via multi-target combination therapy[J]. Journal of Theoretical Biology, 2026, 625: 112425.
[7] A Decentralized Federated Learning model based on population mobility networks: A case study of the COVID-19 pandemic[J]. Chaos, Solitons & Fractals, 2025, 196: 116396.
[8] Assessing Mpox immune impact through a gender-structured immunization strategy under limited resources: A case study in the US, 2022-2023. International Journal of Biomathematics, 2025, 2550077.
[9] An analytical insight into the impact of disease-induced mortality on spatiotemporal patterns on directed networks[J]. Physica A, 2025, 683: 131226.
[10] Numerical evaluations and asymptotic properties for the N-periodic wave solutions of an N=1 supersymmetric MKdV equation in fermionic field[J]. Chaos, Solitons & Fractals, 2025, 203: 117668.
[11] Numerical evaluations of quasi-periodic wave solutions to two supersymmetric integrable equations[J]. Physica D, 2025, 481: 134837.
[12] The state transition and branch structures of nonlinear waves in the Kadomtsev-Petviashvili-based system[J]. Nonlinear Dynamics, 2025, 113(13): 16971-16992.
[13] Dynamics of lump chains for the BKP equation describing propagation of nonlinear waves[J]. Chinese Physics B, 2023, 32(4): 040501.
[14] The increasing strength of higher-order interactions may homogenize the distribution of infections in Turing patterns[J]. Chaos, Solitons & Fractals, 2024, 178: 114369.
[15] Analysis for a model incorporating γ− secretase inhibitor to explore the mechanism of ‘Amyloid-β rise’[J]. Chaos, Solitons & Fractals, 2024, 183: 114867.
[16] Effect of intestinal permeability and phagocytes diffusion rate on pattern structure of Crohn’s disease based on the Turing–Hopf bifurcation[J]. Nonlinear Dynamics, 2024, 112(13): 11419-11445.
[17] Analysis of global vegetation resilience under different future climate scenarios[J]. Climate Dynamics, 2024, 62(8): 7967-7980.
[18] Rational solutions consisting of multiple lump waves and line rogue waves in different spaces of the (3+ 1)-dimensional Boiti–Leon–Manna–Pempinelli equation in incompressible fluid[J]. Nonlinear Dynamics, 2024, 112(9): 7377-7393.
[19] Some new lump molecules and hybrid molecular states of a (3 + 1)-dimensional generalized variable coefficient Kadomtsev–Petviashvili equation[J]. Physics of Fluids, 2024, 36(2).
[20] Solitons, nonlinear wave transitions and characteristics of quasi-periodic waves for a (3 + 1)-dimensional generalized Calogero–Bogoyavlenskii–Schiff equation in fluid mechanics and plasma physics[J]. Chinese Journal of Physics, 2024, 89: 896-929.
[21] Spreading dynamic and optimal control of acute and chronic brucellosis with nonlinear incidence[J]. Nonlinear Dynamics, 2025, 113(5): 4903-4921.
[22] Impact of facet degree heterogeneity on phase transitions in infectious disease spread[J]. New Journal of Physics, 2024, 26(10): 103041.
[23] Pattern dynamics of networked epidemic model with higher-order infections[J]. Chaos: An Interdisciplinary Journal of Nonlinear Science, 2024, 34(10).
[24] Dynamical analysis of solitons, breathers and periodic rogue waves for the variable-coefficient fourth-order nonlinear Schrödinger equation[J]. Nonlinear Dynamics, 2024, 112(24): 22245-22256.
[25] Large time behavior of weak solutions to the inhomogeneous incompressible Navier-Stokes-Vlasov equations in R3[J]. Journal of Differential Equations, 2024, 402: 361-399.
[26] A study in Alzheimer’s disease model for pathological effect of oligomers on the interplay between β-amyloid and Ca2+[J]. Applied Mathematics Letters, 2025, 163: 109407.
[27] Effect of nonlocal delay with strong kernel on vegetation pattern[J]. Journal of Applied Analysis and Computation, 2024, 14(1): 473-505.
[28] An algorithm based on compute unified device architecture for estimating covering functionals of convex bodies[J]. Axioms, 2024, 13(2): 132.
[29] Blow-up of solutions to the wave equations with memory terms in Schwarzschild spacetime[J]. Journal of Mathematical Analysis and Applications, 2024, 540(2): 128637.
[30] The impact of heterogeneous human activity on vegetation patterns in arid environments[J]. Communications in Nonlinear Science and Numerical Simulation, 2023, 126: 107461.
[31] Global perspectives linking climate change with vegetation pattern. Reply to comments on" Impacts of climate change on vegetation pattern: Mathematical modeling and data analysis"[J]. Physics of Life Reviews, 2023, 47: 119-121.
[32] An effective Allee effect may induce the survival of low-density predator[J]. Results in Physics, 2023, 53: 1069

