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Cell migration is important in embryogenesis, metastasis and wound healing. Often, morphogenesis involves chemotactic cell movement up or down chemical gradients. We have developed a computational model of a cell suspension in the vicinity of a porous scaffold that incorporates a chemoattractant substance. In order to study the interplay of adhesion and chemotaxis on cell seeding , we developed a computational model of the system and simulated its evolution using a Metropolis Monte Carlo algorithm. We varied the chemotactic strengths of the cells in order to identify the optimal conditions for a rapid and uniform seeding.
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