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Survival dynamical systems: individual-level survival analysis from population-level epidemic models (2019)
Journal Article
KhudaBukhsh, W. R., Choi, B., Kenah, E., & Rempała, G. A. (2020). Survival dynamical systems: individual-level survival analysis from population-level epidemic models. Interface Focus, 10(1), Article 20190048. https://doi.org/10.1098/rsfs.2019.0048

In this paper, we show that solutions to ordinary differential equations describing the large-population limits of Markovian stochastic epidemic models can be interpreted as survival or cumulative hazard functions when analysing data on individuals s... Read More about Survival dynamical systems: individual-level survival analysis from population-level epidemic models.

Transitions: A Protocol-Independent View of the Future Internet (2019)
Journal Article
Alt, B., Weckesser, M., Becker, C., Hollick, M., Kar, S., Klein, A., Klose, R., Kluge, R., Koeppl, H., Koldehofe, B., Khudabukhsh, W. R., Luthra, M., Mousavi, M., Muhlhauser, M., Pfannemuller, M., Rizk, A., Schurr, A., & Steinmetz, R. (2019). Transitions: A Protocol-Independent View of the Future Internet. Proceedings of the IEEE, 107(4), 835-846. https://doi.org/10.1109/JPROC.2019.2895964

Countless novel approaches to communication protocols, overlay networks, and distributed middleware are published every year, yet the adoption of such novel findings in the global Internet landscape progresses at a slow pace. Many of such new communi... Read More about Transitions: A Protocol-Independent View of the Future Internet.

Quasi-Steady-State Approximations Derived from the Stochastic Model of Enzyme Kinetics (2019)
Journal Article
Kang, H.-W., KhudaBukhsh, W. R., Koeppl, H., & Rempała, G. A. (2019). Quasi-Steady-State Approximations Derived from the Stochastic Model of Enzyme Kinetics. Bulletin of Mathematical Biology, 81(5), 1303-1336. https://doi.org/10.1007/s11538-019-00574-4

The paper outlines a general approach to deriving quasi-steady-state approximations (QSSAs) of the stochastic reaction networks describing the Michaelis–Menten enzyme kinetics. In particular, it explains how different sets of assumptions about chemic... Read More about Quasi-Steady-State Approximations Derived from the Stochastic Model of Enzyme Kinetics.