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Traction fields, moments, and strain energy that cells exert on their surroundings

American Journal of Physiology-Cell Physiology · 2002 · Vol. 282(3) · pp. C595–C605
James P. ButlerIva M. TolićBen FabryJeffrey J. Fredberg

Abstract

Adherent cells exert tractions on their surroundings. These tractions can be measured by observing the displacements of beads embedded on a flexible gel substrate on which the cells are cultured. This paper presents an exact solution to the problem of computing the traction field from the observed displacement field. The solution rests on recasting the relationship between displacements and tractions into Fourier space, where the recovery of the traction field is especially simple. We present two subcases of the solution, depending on whether or not tractions outside the observed cell boundaries are set to be zero. The implementation is computationally efficient. We also give the solution for the traction field in a representative human airway smooth muscle cell contracted by treatment with histamine. Finally, we give explicit formulas for reducing the traction and displacement fields to contraction moments, the orientation of the principal axes of traction, and the strain energy imparted by the cell to the substrate.

Cellular Mechanics and InteractionsMicrofluidic and Bio-sensing Technologies3D Printing in Biomedical ResearchTraction (geology)Displacement fieldMathematical analysisElastic energyPhysicsMathematicsMechanicsFinite element methodEngineeringMechanical engineering

MeSH terms

Acrylic ResinsCell AdhesionCell MovementCells, CulturedFourier AnalysisHistamineHumansMathematicsMicrospheresModels, BiologicalMuscle, SmoothStress, MechanicalCulture Media, Serum-Free
Citations
1,065
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2.92
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References
Theory of Elasticity (3rd ed.)
Journal of Applied Mechanics · 1970 · 3,979 citations
Cell prestress. I. Stiffness and prestress are closely associated in adherent contractile cells
American Journal of Physiology-Cell Physiology · 2002 · 673 citations
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