Диссертация (1143463), страница 32
Текст из файла (страница 32)
715–718.29. Postnikov E. B., Lebedeva E. A., Lavrova A. I. Computationalimplementation of the inverse continuous wavelet transform withouta requirement of the admissibility condition // Appl. Math. Comput.2016. Vol. 282. P. 128–136.30. Жуков, В. В. Федоренко А.
Д., Лаврова А. И., Постников Е. Б.Электрические реакции глазаLymnea stagnalisна световую стимуляцию: влияние двухвалентных катионов // Журн. эволюц. биохимии и физиологии. 2017. Т. 53. С. 360–367.31. Bogaychuk A., Zyubin A., Lavrova A. et al. Dataset on metabolomicsprofile of acute leukemia blood obtained by the NMR methods // Datain Brief. 2017.
Vol. 11. P. 479–483.32. Zyubin A., Lavrova A., Demin M. et al. The data obtained duringthe analysis of clinical blood samples for children acute lymphoblasticleukemia patients with severe side-effects // Data in Brief. 2017. Vol. 11.P. 522–526.33. Lavrova A. I., Postnikov E. B., Zyubin A. Yu., Babak S. V. Ordinarydifferential equations and Boolean networks in application to modellingof 6-mercaptopurine metabolism // Royal Soc. Open Sci.
2017. Vol. 4.P. 160872.34. Malashchenko V., Zyubin A., Babak S., Lavrova A. ATP concentrationas possible marker of liver damage at leukaemia treatment: confocalmicroscopy-based experimental study and numerical simulations //Proc. SPIE. 2017. Vol. 103371. P. 103371B.35. Zyubin A., Lavrova A., Babak S. et al. Childhood lymphoblasticleukemia adverse drug reactions: study of risk factors and therapyprognosis by optical methods // Proc.
SPIE.2322016.Vol. 10024.P. 1002432.36. Moullin E. B. Theory and performance of corner reflectors for aerials //Journal of the Institution of Electrical Engineers-Part III: Radio andCommunication Engineering. 1945. Vol. 92. P. 58–67.37. Jacob CE. Appendix A - Report of the subcommittee on permeability //Transactions of American Geophysical Union. 1946.
Vol. 27. P. 245–256.38. Philip J. R. The theory of infiltration: 5. The influence of the initialmoisture content. // Soil Science. 1957. Vol. 84. P. 329–340.39. Iqbal M., Stachiewicz J. W. Influence of tube orientation on combinedfree and forced laminar convection heat transfer // Journal of HeatTransfer. 1966. Vol. 88. P. 109–116.40. Gottifredi J. C., Jameson G. J. The suppression of wind-generatedwaves by a surface film // Journal of Fluid Mechanics.
1968. Vol. 32.P. 609–618.41. Bell R., Burdekin M. A study of the stick-slip motion of machine toolfeed drives // Proceedings of the Institution of Mechanical Engineers.1969. Vol. 184. P. 543–560.42. Stevens B. The collisional stabilization of excited -naphthylaminemolecules by the paraffin hydrocarbons in the gas phase // MolecularPhysics.
1960. Vol. 3. P. 589–596.43. Jørgensen C. K., Judd B. R. Hypersensitive pseudoquadrupoletransitions in lanthanides // Molecular Physics.1964.Vol. 8.P. 281–290.44. Klots C. E. Statistical aspects of autoionization lifetimes // Journal ofChemical Physics. 1967. Vol. 46. P. 1197–1199.45. Haken H. Synergetics: an introduction : nonequilibrium phasetransitions and self-organization in physics, chemistry, and biology.Berlin: Springer, 1977.23346. Comprehensive Nanoscience and Technology / Ed. by D. L. Andrews,G.
D. Scholes, G. P. Wiederrecht. Academic Press, 2010.47. Madden B. G. Simultaneous determination of system parameters fromtransient response // IEEE Transactions on Applications and Industry.1963. Vol. 82. P. 327–331.48. Kim K. A., Spencer S. L., Albeck J. G. et al. Systematic calibration ofa cell signaling network model // BMC bioinformatics. 2010. Vol. 11.P.
202.49. Levin B. R., Udekwu K. I. Population dynamics of antibiotic treatment:a mathematical model and hypotheses for time-kill and continuousculture experiments // Antimicrobial agents and chemotherapy. 2010.Vol. 54. P. 3414–3426.50. Muñoz-Tamayo R., Martinon P., Bougaran G. et al. Getting the mostout of it: optimal experiments for parameter estimation of microalgaegrowth models // Journal of Process Control.2014.Vol.
24.P. 991–1001.51. Buddemeier R. W. Symbiosis, calcification, and environmentalinteractions // Bulletin de l’Institut océanographique. 1994. P. 119–135.52. Miller A. L., Gow N. A. R. Correlation between root-generated ioniccurrents, pH, fusicoccin, indoleacetic acid, and growth of the primaryroot of Zea mays // Plant Physiology.
1989. Vol. 89. P. 1198–1206.53. Fisahn J., Lucas W. J. Direct measurement of the reversal potentialand current-voltage characteristics in the acid and alkaline regions ofChara corallina // Planta. 1992. Vol. 186. P. 241–248.54. Fisahn J., Lucas W. J. Spatial organization of transport domains andsubdomain formation in the plasma membrane of Chara corallina //Journal of Membrane Biology. 1995. Vol.
147. P. 275–281.55. Feijó J. A., Sainhas J., Hackett G. R. et al. Growing pollen tubes possess234a constitutive alkaline band in the clear zone and a growth-dependentacidic tip // Journal of Cell Biology. 1999. Vol. 144. P. 483–496.56. Gibbon B. C., Kropf D. L. pH gradients and cell polarity in Pelvetiaembryos // Protoplasma. 1991. Vol. 163. P. 43–50.57. Shabala S., Shabala L., Gradmann D. et al.
Oscillations in plantmembrane transport: model predictions, experimental validation, andphysiological implications // Journal of Experimental Botany. 2005.Vol. 57. P. 171–184.58. Shabala S., Delbourgo R., Newman I. Observations of bifurcation andchaos in plant physiological responses to light // Functional PlantBiology. 1997. Vol. 24. P. 91–96.59. Rhythms in Plants: Phenomenology, Mechanisms, and AdaptiveSignificance / Ed. by S. Mancuso, S. Shabala. Springer, 2007.60.
Walker N. A., Smith F. A. Circulating Electric Currents Between Acidand Alkaline Zones Associated with HCO-3 Assimilation in Chara //Journal of Experimental Botany. 1977. Vol. 28. P. 1190–1206.61. Lucas W. J., Dainty J. Spatial distribution of functional OH- carriersalong a Characean internodal cell: determined by the effect ofcytochalasin B on H 14 CO 3- assimilation // Journal of MembraneBiology. 1977. Vol. 32.
P. 75–92.62. Beilby M. J., Casanova M. The Physiology of Characean Cells. Springer,2014.63. Fisahn J., McConnaghey T., Lucas W. J. Oscillations in extracellularcurrent, external pH and membrane potential and conductance in thealkaline bands of Nitella and Chara // Journal of Experimental Botany.1989. Vol. 40. P. 1185–1193.64. Fisahn J., Mikschl E., Hansen U.-P. Separate oscillations of theelectrogenic pump and of a K+-channel in Nitella as revealed by235simultaneous measurement of membrane potential and of resistance //Journal of Experimental Botany. 1986. Vol. 37. P.
34–47.65. Bulychev A. A., Cherkashin A. A., Rubin A. B., Müller S. C.Distribution of acid and alkaline zones on the cell surface of Characorallina under stationary and local illumination // Russian Journal ofPlant Physiology. 2002. Vol. 49. P. 715–722.66. Boels H. Di., Hansen U. P. Light and electrical current stimulate thesame feedback system in Nitella // Plant and Cell Physiology. 1982.Vol. 23.
P. 343–346.67. Kawahata C., Yamamuro M., Shiraiwa Y. Changes in alkaline bandformation and calcification of corticated charophyte Chara globularis //SpringerPlus. 2013. Vol. 2. P. 85.68. Verchot-Lubicz J., Goldstein R. E. Cytoplasmic streaming enablesthe distribution of molecules and vesicles in large plant cells //Protoplasma. 2010.
Vol. 240. P. 99–107.69. Bulychev A. A., Zykov S. V., Rubin A. B., Müller S. C. Transitionsfrom alkaline spots to regular bands during pH pattern formation atthe plasmalemma of Chara cells // European Biophysics Journal. 2003.Vol. 32. P. 144–153.70. Bulychev A. A., Cherkashin A. A., Rubin A. B. et al. Comparative studyon photosynthetic activity of chloroplasts in acid and alkaline zones ofChara corallina // Bioelectrochemistry. 2001.
Vol. 53. P. 225–232.71. Spear D. G., Barr J. K., Barr C. E. Localization of hydrogen ion andchloride ion fluxes in Nitella // Journal of Peneral Physiology. 1969.Vol. 54. P. 397–414.72. Smith F. A., Walker N. A. Chloride transport in Chara corallina andthe electrochemical potential difference for hydrogen ions // Journal ofExperimental Botany. 1976. Vol. 27.
P. 451–459.23673. Lucas W. J. Mechanism of acquisition of exogenous bicarbonate byinternodal cells of Chara corallina // Planta. 1982. Vol. 156. P. 181–192.74. Lucas William J. Photosynthetic assimilation of exogenous 3− byaquatic plants // Annual Review of Plant Physiology. 1983. Vol. 34.P. 71–104.75. Bulychev A. A., Komarova A. V. Photoregulation of photosystem IIactivity mediated by cytoplasmic streaming in Chara and its relationto pH bands // Biochimica et Biophysica Acta (BBA) – Bioenergetics.2017. Vol.
1858. P. 386–395.76. Lefebvre J., Gillet C. Periodic variations of the chloride electrochemicalpotential difference during spontaneous oscillations of the membranepotential in Nitella // Biochimica et Biophysica Acta. 1970. Vol. 203.P. 575–578.77. Hansen U.-P. Do light-induced changes in the membrane potentialofNitella reflect the feed-back regulation of a cytoplasmic parameter? //Journal of Membrane Biology. 1978. Vol. 41. P. 197–224.78. Hayashi H., Hirakawa K. Nitella fluctuation and instability in themembrane potential near threshold // Biophysical Journal.1980.Vol. 31. P. 31–43.79. Vuletić M., Radenović Č., Vučinić Ž.
The role of calcium in thegeneration of membrane potential oscillations in Nitella cells. // Gen.Physiol. Biophys. 1987. Vol. 6. P. 203–207.80. Śpiewla E., Tokarska M. Oscillations of membrane potential duringinhibition of cytoplasmic streaming in Characean internodes //Physiologia Plantarum.
1990. Vol. 80. P. 191–195.81. Findlay G. P., Hope A. B., Pitman M. G. et al. Ionic fluxes incells of Chara corallina // Biochimica et Biophysica Acta (BBA) –Biomembranes. 1969. Vol. 183. P. 565–576.23782. Sanders D., Smith F. A., Walker N. A. Proton/chloride cotransportin Chara: mechanism of enhanced influx after rapid externalacidification // Planta. 1985.
Vol. 163. P. 411–418.83. Frost Shartzer S. A., Fisahn J., Lucas W. J. Simultaneous measurementof extracellular current and membrane potential of Chara corallinainternodal cells during light-induced modulation of H+ transport //Comptes rendus de l’Académie des sciences. Série 3, Sciences de la vie.1992. Vol. 315. P. 247–254.84.