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Two types of integrative dynamic model capable of simulating dynamics of cell growth and fermentation in batch or fed-batch fermentation of lignocellulosic biomass have been developed: (1) dynamic flux balance model and (2) cybernetic model.
TPA and the Proteomic Ruler are powerful tools for studying dynamics of cell architecture.
The model is a generally useful tool for understanding gene regulation and the dynamics of cell fate specification.
The model successfully predicted the dynamics of cell growth, glucose consumption, ethanol metabolism and alcohol dehydrogenase (ADH) production.
In reality, even cells within a same population and with similar functions respond asynchronously thus making particular studies on kinetics and dynamics of cell population is impossible.
This type of work studies the dynamics of cell assemblies and gives mathematical expressions of the hypothetical dynamics of neuronal populations in the cortex.
The cine photography enables the dynamics of cell growth and fissioning to be studied and qualitatively interpreted, in terms of flame stretch rates and thermodiffusion.
Simulation also indicates that the transient response of SOFC is controlled mainly by the dynamics of cell temperature owing to its large heat capacity.
In this work, we investigated the dynamics of cell deformation under different creeping flows as a general simulation tool for predicting nuclear stresses and strains.
This model provides important insights into dynamics of cell subpopulations during megakaryopoiesis process and could potentially contribute toward the rational design of cell-based therapy bioprocesses.
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Despite major advances, tissue engineers have faced challenges in studying the complex dynamics of cell-mediated hydrogel remodelling.
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CEO of Professional Science Editing for Scientists @ prosciediting.com