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Dynamic Mechanical Finite Element Model of Biological Cells for Studying Cellular Pattern Formation

Annual International Conference of the IEEE Engineering in Medicine and Biology Society(2013)

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biological tissues,biomechanics,cellular biophysics,finite element analysis,pattern formation,physiological models,shrinkage,blood-vessel development,cell apoptosis,cell birth,cell death,cell division,cell fusion,cell geometric property,cell growth,cell mechanical property,cell modeling method,cell population,cell shrinkage,cell topologic property,cellular pattern formation,cellular shape,computational model,computational tool,dynamic mechanical finite element model,embryogenesis,organ development,tissue pattern formation,tissue regeneration,tumor growth
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