Modification of Chanter–Thornley mushroom growth model and its analysis by means of multiapproach simulation

 pdf (236K)  / Annotation

List of references:

  1. И. И. Бандура, Е. С. Миронычева. Биологическая эффективность штаммов вешенки обыкновенной Pleurotus ostreatus (jacq:Fr) Kumm при низкотемпературном культивировании // Земледелие и защита растений. — 2013. — Т. 5 (90). — С. 33–34.
  2. П. С. Краснощеков. Простейшая математическая модель поведения. Психология конформизма // Математическое моделирование. — 1998. — Т. 10(7). — С. 76–92.
  3. C. Caminade, S. Kovats, J. Rocklov, A. M. Tompkins, A. P. Morse, F. J. Colon-Gonzalez, H. Stenlund, P. Martens, S. J. Lloyd. Impact of climate change on global malaria distribution // Proc Natl Acad Sci USA. — 2014. — V. 111(9). — P. 3286–3291. — DOI: 10.1073/pnas.1302089111. — ads: 2014PNAS..111.3286C.
  4. D. O. Chanter. Harvesting the Mushroom Crop: a Mathematical Model // Journal of General Microbiology. — 1979. — V. 115(1). — P. 79–87. — DOI: 10.1099/00221287-115-1-79.
  5. D. O. Chanter, J. H. M. Thornley. Mycelial Growth and the Initiation and Growth of Sporophores in the Mushroom Crop: a Mathematical Model // Journal of General Microbiology. — 1978. — V. 106(1). — P. 55–65. — DOI: 10.1099/00221287-106-1-55.
  6. T. E. Day, N. Rav, H. Xian, A. Brugh. An Agent-Based Modeling Template for a Cohort of Veterans with Diabetic Retinopathy // PLoS One. — 2013. — V. 8(6). — P. e66812. — ads: 2013PLoSO...866812D.
  7. V. Grimm, E. Revilla, U. Berger, F. L. Jeltsch, W. M. Mooij, St. F. Railsback, H. H. Thulke, J. Weiner, Th. Wiegand, D. L. DeAngelis. Pattern-oriented modeling of agent-based complex systems: lessons from ecology // Science. — 2005. — V. 310. — P. 987–991. — DOI: 10.1126/science.1116681. — ads: 2005Sci...310..987G.
  8. V. Grimm, L. Berger, F. Bastiansen, S. Eliassen, V. Ginot, J. Giske, J. Goss-Custard, T. K. Heinz S. Grand, G. Huse, A. Huth, J. U. Jepsen, Chr. Jorgensen, W. M. Mooijh, B. Muller, G. Peer, C. Piou, S. F. Railsback, A. M. Robbins, M. M. Robbins, E. Rossmanith, N. Ruger, E. Strand, S. Souissi, R. A. Stillman, R. Vabo, U. Visser, D. L. DeAngelis. A standard protocol for describing individual-based and agent-based models // Ecol. Model. — 2006. — V. 198. — P. 115–126. — DOI: 10.1016/j.ecolmodel.2006.04.023. — MathSciNet: MR2669942.
  9. N. Hubel, E. Scholl, M. A. Dahlem. Bistable dynamics underlying excitability of ion homeostasis in neuron models // PLoS Comput Bio. — 2014. — V. 10(5). — P. e1003551.
  10. P. Kim. A simple model of ostracism formation // PLoS One. — 2014. — V. 29(4). — P. e94333. — ads: 2014PLoSO...994333K.
  11. C. Muller. Modelling soil-biosphere interactions. — N.Y: CABI Publishing, 1999. — 300 p.
  12. S. F. Railsback, V. Grimm. Agent-based and Individual-based Modeling: a practical introduction. — Princeton N.Y: Princeton University Press, 2012. — 330 p. — MathSciNet: MR2153370.
  13. Z. Wang, J. D. Butner, R. Kerketta, V. Cristini, T. S. Deisboeck. Simulating cancer growth with multiscale agent-based modeling // Seminars in Cancer Biology. — 2015. — V. 30. — P. 70–78. — DOI: 10.1016/j.semcancer.2014.04.001.

Indexed in Scopus

Full-text version of the journal is also available on the web site of the scientific electronic library eLIBRARY.RU

The journal is included in the Russian Science Citation Index

The journal is included in the RSCI

International Interdisciplinary Conference "Mathematics. Computing. Education"