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A mathematical model for cell sorting, migration and shape in the slug stage of Dictyostelium discoideum

✍ Scribed by Tamiki Umeda


Publisher
Springer
Year
1989
Tongue
English
Weight
718 KB
Volume
51
Category
Article
ISSN
1522-9602

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✦ Synopsis


A mathematical model for cell sorting and migration in the slug stage of cellular slime molds Dictyostelium discoideum is proposed. Assuming that a slug is a "mixed fluid" of prespore and prestalk cells, a set of equations which describe the dynamics of cell distribution, internal pressure and velocity of the slug are derived from the balance formula of individual cell movement. These equations are analyzed to obtain the spatial patterns of the two types of ceUs at dynamical equilibrium and the relationship between the migration velocity and the slug size. The body shape of the elongated slug at the migrating stage is also investigated, taking account of the law of surface tension. The stable shapes of slugs with different volumes are explicitly obtained and the existence of critical size of a slug is suggested.


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