![]() The cell evolution rules are designed in the Von Neumann extended neighborhood of cells, and a large number of experiments and analysis are carried out. ![]() In this paper, a computer model based on two-dimensional and three-dimensional simulation of cell growth dynamics is proposed. Two-dimensional cellular automata and three-dimensional cellular automata are used to calculate the cell growth. Our team selected chicken muscle satellite cells as seed cells. Therefore, the basic idea of this study is to use mathematical and physical tools to build a prediction model of cell growth distribution, simulate the growth of real cells, and verify the results in combination with biological experiments, so as to not only predict the main laws of real cell growth, but also lay a good foundation for real-time global biophysical simulation in the next step. These information are related to cell type, culture medium type and concentration. From the perspective of theoretical verification, the characteristic information of cells, including the total number of cells growing in real time, distribution location and the relative proportion of cells in different cycles, is very key and important. ![]() It is well known that many biological experiments are aimed at isolated cell communities.
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