A topological model of microtubule caps with dynamical edge states reproduces peaked distributions of lengths at catastrophe and growth stuttering using two free parameters while providing an analytical description consistent with experiments across tubulin concentrations.
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Enhanced thermal stability in platinum oxides after a structural transition arises from a shift to an isostatic elastic network that forms a commensurate Moiré superlattice with the substrate and relaxes elastic energy.
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Topological edge currents promote exploratory chromosome capture in microtubule dynamic instability
A topological model of microtubule caps with dynamical edge states reproduces peaked distributions of lengths at catastrophe and growth stuttering using two free parameters while providing an analytical description consistent with experiments across tubulin concentrations.
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Mechanical Origin of High-Temperature Thermal Stability in Platinum Oxides
Enhanced thermal stability in platinum oxides after a structural transition arises from a shift to an isostatic elastic network that forms a commensurate Moiré superlattice with the substrate and relaxes elastic energy.