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- W2896799885 abstract "We study the most probable trajectories of the concentration evolution for the transcription factor activator in a genetic regulation system, with non-Gaussian stable L'evy noise in the synthesis reaction rate taking into account. We calculate the most probable trajectory by spatially maximizing the probability density of the system path, i.e., the solution of the associated nonlocal Fokker-Planck equation. We especially examine those most probable trajectories from low concentration state to high concentration state (i.e., the likely transcription regime) for certain parameters, in order to gain insights into the transcription processes and the tipping time for the transcription likely to occur. This enables us: (i) to visualize the progress of concentration evolution (i.e., observe whether the system enters the transcription regime within a given time period); (ii) to predict or avoid certain transcriptions via selecting specific noise parameters in particular regions in the parameter space. Moreover, we have found some peculiar or counter-intuitive phenomena in this gene model system, including (a) a smaller noise intensity may trigger the transcription process, while a larger noise intensity can not, under the same asymmetric L'evy noise. This phenomenon does not occur in the case of symmetric L'evy noise; (b) the symmetric L'evy motion always induces transition to high concentration, but certain asymmetric L'evy motions do not trigger the switch to transcription. These findings provide insights for further experimental research, in order to achieve or to avoid specific gene transcriptions, with possible relevance for medical advances." @default.
- W2896799885 created "2018-10-26" @default.
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- W2896799885 date "2018-10-09" @default.
- W2896799885 modified "2023-09-22" @default.
- W2896799885 title "Most Probable Evolution Trajectories in a Genetic Regulatory System Excited by Stable L'evy Noise" @default.
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- W2896799885 doi "https://doi.org/10.48550/arxiv.1810.09913" @default.
- W2896799885 hasPublicationYear "2018" @default.
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