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Showing 1 to 7 of 7 for “"cell cycle model"”.

  1. Power Saving Analysis and Experiments for Large Scale Global Optimization

    … parameter estimation for a budding yeast cell cycle model, on System G. Two power aware approaches for pVTdirect are developed and compared against the CPUSPEED power saving system tool. The results show that knowledge of the parallel workload of the underlying application is beneficial …

    vt Repository record for Power Saving Analysis and Experiments for Large Scale Global Optimization (opens in a new tab)

  2. Mathematical modeling of molecular mechanisms governing cell cycle progression in Caulobacter crescentus and differentiation of immune system progenitor cells

    Mathematical modeling of biological systems can be useful to reveal new insights into biological observations. Here we apply mathematical modeling to study the underlying molecular networks driving observed behaviors of two systems. First, we apply systems biology and dynamic systems theory …

    vt Repository record for Mathematical modeling of molecular mechanisms governing cell cycle progression in Caulobacter crescentus and differentiation of immune system progenitor cells (opens in a new tab)

  3. Dynamics near discontinuity events in systems with hysteresis and systems with finite state resets

    … thesis, we study the dynamics near grazing for a model of an atomic force microscope in tapping mode and a model of cell cycle mitosis. In particular, period one behavior is studied near grazing points corresponding to tangential contact with the discontinuity surface used to initiate capillary …

    uiuc Repository record for Dynamics near discontinuity events in systems with hysteresis and systems with finite state resets (opens in a new tab)

  4. Computational Techniques for the Analysis of Large Scale Biological Systems

    … problems, with applications to the yeast cell division cycle, and to the RNA-Sequencing of the yellow fever mosquito. Cell cycle system evolves stochastic effects when there are a small number of molecules react each other. Consequently, the stochastic effects of the cell cycle are …

    vt Repository record for Computational Techniques for the Analysis of Large Scale Biological Systems (opens in a new tab)

  5. Analysis and Application of Haseltine and Rawlings's Hybrid Stochastic Simulation Algorithm

    Stochastic effects in cellular systems are usually modeled and simulated with Gillespie's stochastic simulation algorithm (SSA), which follows the same theoretical derivation as the chemical master equation (CME), but the low efficiency of SSA limits its application to large chemical networks. To …

    vt Repository record for Analysis and Application of Haseltine and Rawlings's Hybrid Stochastic Simulation Algorithm (opens in a new tab)

  6. Stochastic Modeling and Simulation of Multiscale Biochemical Systems

    Numerous challenges arise in modeling and simulation as biochemical networks are discovered with increasing complexities and unknown mechanisms. With the improvement in experimental techniques, biologists are able to quantify genes and proteins and their dynamics in a single cell, which calls for …

    vt Repository record for Stochastic Modeling and Simulation of Multiscale Biochemical Systems (opens in a new tab)

  7. Mathematical Model of the Cell Cycle Control and Asymmetry Development in Caulobacter crescentus

    … crescentus goes through a classic dimorphic cell division cycle to adapt to the stringent environment and reduce intraspecific competition. Caulobacter mother cell gives rise to two progenies with distinct morphology - a motile swarmer cell equipped with a flagellum and a sessile stalked cell

    vt Repository record for Mathematical Model of the Cell Cycle Control and Asymmetry Development in Caulobacter crescentus (opens in a new tab)