Справочник "Биофизики России"
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- Malchow H., Shigesada N. Nonequilibrium plankton communitiy structures in an ecohydrodynamic model system // Nonlinear Processes in Geophysics, 1994, v. 1, p. 3 - 11.
- Malchow H., Shigesada N. Nonequilibrium plankton community structures in an ecohydrodynamic model system Nonlinear processes in Geophysics (1994) 1, 3-11
- Malm J., Mironov D., Terzhevik. A., Jonsson L. Investigation of the spring thermal regim in Lake Ladoga using field and satellite data // Limnol. Oceanogr., 1994, v. 39, p. 1333 - 1348.
- Pace M. L., Vaque D. The importance of Daphnia in determining mortality rates of protozoans and rotifers in lakes // Limnol. Oceanogr., 1994, v. 39, p. 985 - 996.
- Prosandeyev S. A., Tarasevich Yu. Yu. Optical and electric properties of crystals with alternate structures // Ferroelectrics, 1994, 164
- Reitan K. I., Rainuzzo J. R., Olsen Y. Effect of nutrient limitation on fatty acid and lipid content of marine microalgae // J. Phycol., 1994, v. 30, p. 972 - 979.
- Riznichenko G. Yu., Plusnina T. Yu., Aksyonov S. I. Modelling of the effect of a weak electric field on a nonlinear transmembrane ion transfer system // Bioelectrochemistry and Bioenergetics, 1994, vol. 35, pp. 39-47
A mathematical modelling of the K+/H+ antiport system was carried out to investigate the influence of a weak low-frequency applied periodic electric field on ion flux via a carrier across the lipid membrane. Nonlinear in character, the system can have a damped oscillatory, trigger or self-sustained oscillatory behaviour depending on the pattern of the ionic flux. Numerical calculation showed that the applied electric field could parametrically regulate nonlinear biological systems and the effects can be significant in bifurcation areas. The intensity of applied periodic electric field was estimated to be in the range 10-600 V/cm and the frequency in the range 10-2-10 Hz.
- Ross A. H., Gurney W. S. C., Heath M. R. A comparative study of the ecosystem dynamics of four fjords // Limnol. Oceanogr., 1994, v. 39, p. 318 - 343.
- Schneider E. D., Kay J. J. Life as a manifestation of the second law of thermodynamics Math. Comput. Model. – 1994. 19. – Pp.25 – 48.
- Tollrian R., Elert E. Enrichment and purification of Chaoborus kairomone from water: further steps toward its chemical characterization // Limnol. Oceanogr., 1994, v. 39, p. 788 - 796.
- Verhagen J. H. G. Modelling phytoplankton patchiness under the influence of wind-driven currents in lakes // Limnol. Oceanogr., 1994, v. 39, p. 1551 - 1565.
- Vezina A. F., Pace M. L. An inverse model analysis of planktonic food webs in experimental lakes // Canad. J. Fish. Aquat. Sci., 1994, v. 51, p. 2034 - 2044.
- Webster I. T., Hutchinson P. A. Effect of wind on the distribution of phytoplankton cells in lakes revisited // Limnol. Oceanogr., 1994, v. 39, p. 365 - 373.
- Wen Y. H., Peters R. H. Empirical models of phosphorus and nitrogen excretion rates by zooplankton // Limnol. Oceanogr., 1994, v. 39, p. 1669 - 1679.
- Wilhelm T., Hoffmann-Klipp E., Heinrich R. An evolutionary approach to enzyme kinetics: optimization of ordered mechanisms Bull. Math. Biol. – 1994. 56, N.1. – Pp.65 – 106.
- Алимов А. Ф., Бульон В. В., Голубков С. М. и др. Влияние рыб на структуру и функционирование экосистем озер-рыбопитомников // Биотические взаимоотношения в экосистеме озер-питомников СПб.: Гидрометеоиздат, 1993, с. 299 - 311.
- Алимов А. Ф., Никулина В. Н., Панов В. Е., Телеш И. В., Финогенова Н. П. Гидробиологическая характеристика Невской губы Финского залива // Гидробиол. журн., 1993, т. 29, (3, с. 3 - 14.
- Баренблатт Г. И., Виноградов М. Е., Горбунов А. Е., Петровский С. В. К вопросу о моделировании импактных волн в сложных экологических системах // Океанология, 1993, т. 33, (1, с. 5 - 12.
- Веселова Т. В., Веселовский В. А., Чернавский Д. С. Стресс у растений. Биофизический подход М.: Изд-во МГУ. 1993. 148с
- Виноградов М. Е., Баренблатт Г. И., Горбунов А. Е., Петровский С. В. Математическое моделирование импакта в экологических системах // ДАН, 1993, т. 328, (4, с. 509 - 512.
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