[1] YANG T, ZHANG C, ZENG C, et al. Delay and noise induced regime shift and enhanced stability in gene expression dynamics [J]. Journal of Statistical Mechanics Theory & Experiment, 2014(12): 12015.
[2] ZHU P, FU Y. Stationary Properties and Stochastic Resonance for a Saturation Laser Model with Cross-correlation Between Quantum Noise Terms [J]. J Stat Phys, 2009(136): 131 − 143.
[3] DUAN W L. The stability analysis of tumor-immune responses to chemotherapy system driven by Gaussian colored noises [J]. Chaos Solitons & Fractals, 2020, 141: 110303.
[4] YANG Y C, LI D X. Impact of colored noise on population model with Allee effect [J]. Communications in Theoretical Physics, 2019, 71(1): 107 − 116. doi:  10.1088/0253-6102/71/1/107
[5] SMITS W K, ESCHEVINS C C, SUSANNA K A, et al. Stripping Bacillus: ComK auto-stimulation is responsible for the bistable response in competence development [J]. Molecular Microbiology, 2005, 56(3): 604 − 614. doi:  10.1111/j.1365-2958.2005.04488.x
[6] MANNMAR H, DUBNAU D. Bistability in the Bacillus subtilis K-state (competence) system requires a positive feedback loop [J]. Molecular Microbiology, 2005, 56(3): 615 − 624. doi:  10.1111/j.1365-2958.2005.04592.x
[7] KARMAKAR R, BOSE I. Positive feedback, stochasticity and genetic competence [J]. Physical Biology, 2007, 4(1): 29. doi:  10.1088/1478-3975/4/1/004
[8] PAL M, PAL A K, GHOSH S, et al. Early signatures of regime shifts in gene expression dynamics [J]. Physical Biology, 2013, 10(3): 036010. doi:  10.1088/1478-3975/10/3/036010
[9] WU G. Approximate Fokker–Planck equation of system driven by multiplicative colored noises with colored cross-correlation [J]. Physica A: Statistical Mechanics and its Applications, 2004, 335(3/4): 371 − 384.
[10] SHI P M, XIA H F, HAN D Y, et al. Stochastic resonance in a time polo-delayed asymmetry bistable system driven by multiplicative white noise and additive color noise [J]. Chaos, Solitons & Fractals, 2018, 108: 8 − 14.
[11] QIU H H, ZHANG B B, ZHOU T S. Explicit effect of stochastic reaction delay on gene expression [J]. Physical Review E, 2020, 101(1): 12405. doi:  10.1103/PhysRevE.101.012405
[12] FRANK T D. Delay Fokker-Planck equations, Novikov’s theorem, and Boltzmann distributions as small delay approximations [J]. Physical Review E, 2005, 72(1): 011112. doi:  10.1103/PhysRevE.72.011112
[13] FOX, R F. Laser-noise analysis by first-passage-time techniques [J]. Physical Review A, 1986, 34(4): 3405. doi:  10.1103/PhysRevA.34.3405
[14] JIA Y, Li J R. Transient properties of a bistable kinetic model with correlations between additive and multiplicative noises: Mean first-passage time [J]. Physical Review E Statistical Physics Plasmas Fluids & Related Interdisciplinary Topics, 1996, 53(6): 5764.
[15] HOLMHOUSE J, GUPTA A, GRIMA R. Steady-state fluctuations of a genetic feedback loop with fluctuating rate parameters using the unified colored noise approximation [J]. Journal of Physics A, 2020, 53(40): 405601. doi:  10.1088/1751-8121/aba4d0
[16] YU X X, GUO Y F, LOU X J, et al. First-passage behavior of under-damped asymmetric bistable system driven by Lévy noise [J]. Modern Physics Letters B, 2020, 34(31): 2050348. doi:  10.1142/S0217984920503480
[17] JIA Z L, MEI D C. Controlling the noise enhanced stability effect via noise recycling in a metastable system [J]. European Physical Journal B, 2012, 85(4): 1 − 8.
[18] MASOLIVER J, WEST B J, LINDENBERG K. Bistability driven by Gaussian colored noise: First-passage times [J]. Physical Review A, 1987, 35(7): 3086 − 94. doi:  10.1103/PhysRevA.35.3086