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The behaviour of each cell is dependent only on the state of its eight immediate neighbours, according to the following rules: Live cells: a live cell with zero or one live neighbours will die.
These cells, in turn, are sets of transistors wired together to perform simple logical operations.The precise behaviour of each cell is determined by loading a string of numbers into a memory underneath it.
The throughput, the signal power received by each user and the behaviour of each cell are recorded and analysed.
Thus the behaviour of each cell agent was governed not only by the rule set at the cellular level, but also by the TGF-β1 subcellular mechanisms that were simulated with COPASI.
Thus the behaviour of each cell agent was governed not only by rule sets at the cellular level, but also by TGF-β1 sub-cellular mechanisms that were simulated with COPASI.
As in the DCF models behaviour of each cell type is described by three parameters: 1) proliferation rate describing how often, on the average, a cell divides per unit of time; 2) the fractions of self-renewal and differentiation during cell division and 3) the death rate equal to the fractions of a specified cell subpopulation which dies per unit of time.
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To estimate whether it is cell adhesion or migration that is supposed to be crucial for kidney metastasis formation, the behaviour of each CHO cell type relative to fibronectin was analysed in vitro.
Recording intracellular (IC) bioelectrical signals is central to understanding the fundamental behaviour of cells and cell networks in, for example, neural and cardiac systems1,2,3,4.
Once Markram has the full list – the so-called "single-cell transcriptome" – he is confident that he can use it to deduce the blend of different neurons in various parts of the brain, recreate the electrical behaviour of each type of cell, or even simulate how a neuron's branches would grow from scratch.
The two-scale approach enables calculation of the stress field within the unit cell, based on the constitutive behaviour of each subcell and the unit cell morphology.
We categorized the abnormalities associated with each notochord cell to evaluate the cell-autonomous and -non-autonomous behaviour of the cell.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com