A model for microtubule oscillations is presented based on a set of chemical reaction equations. The rate constants for these reactions are largely determined from experimental data. The plots of assembled tubulin and the phase diagram for assembly are compared with the experimental findings and are
Relaxation self-oscillations in chemical kinetics: A model, conditions for realization
β Scribed by V.M. Gol'dshtein; V.A. Sobolev; G.S. Yablonskii
- Publisher
- Elsevier Science
- Year
- 1986
- Tongue
- English
- Weight
- 655 KB
- Volume
- 41
- Category
- Article
- ISSN
- 0009-2509
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β¦ Synopsis
Nonlinearity + reversibility = feedback for self-oscillations. This qualitative conclusion was obtained after a detailed analysis of the simplest model describing relaxation self-oscillations, which were experimentally found in some chemical systems. The reversibility of some steps is shown to be responsible to a great extent for the appearance of relaxation self-oscillations. It is just the combination of reversibility with specific nonlinearity that forms the feedback necessary for the appearance of self-oscillations.
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