Диссертация (1102496), страница 14
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V. 13. № 1. P. 014001.120.Fontes A., Fernandes H. P., de Thomaz A. A., Barbosa, L. C., Barjas-Castro M. L.Cesar C.L. Measuring electrical and mechanical properties of red blood cells withdouble optical tweezers // J. Biomed. Opt. 2008. V. 13. № 1. P. 014001.121.Ashkin A. Acceleration and trapping of particles by radiation pressure // Phys. Rev.Lett. 1970. V.
24. № 4. P. 156-159.122.Ashok P. C. and Dholakia K. Optical trapping for analytical biotechnology // CurrentOpinion in Biotechnology. 2011. V. 23. № 1. P. 16-21.123.Stevenson D. J., Gunn-Moore F., Dholakia K. Light forces the pace: opticalmanipulation for biophotonics // Journal of Biomedical Optics.
2010. V. 15. № 4. P.041503-1-041503-21.92124.Zhong M. C., Wei X.-B., Zhou J.-H., Wang Z.-Q., Li Y.-M. Trapping red blood cellsin living animals using optical tweezers // Nature Communications. 2013. V. 4. №1768.125.Wang M. D., Yin H., Landick R., Gelles J., Block S. M. Stretching DNA with OpticalTweezers // Biophysical Journal. 1997. V.
72. P. 1335-1346.126.Bennik M. L., Leuba S. H., Leno G. H., Zlatanova J., de Grooth B. G., Greve J.Unfolding individual nucleosomes by stretching single chromatin fibers with opticaltweezers // Nature Structural Biology. 2001. V. 8. P. 606-610.127.Neuman K. C., Block S. M. Optical trapping // Review of Scientific Instruments.2004. V. 75. №. 9.
P. 2787-2809.128.Liu Y., Cheng D. K., Sonek G. J., Berns M. W., Chapman C. F., Tromberg B. J.Evidence for localized cell heating induced by infrared optical tweezers // Biophys. J.1985. V. 68. № 5, P. 2137-2144.129.Rao S., Balint S., Cossins B., Guallar V., Petrov D. Raman Study of MechanicallyInduced Oxygenation State Transition of Red Blood Cells Using Optical Tweezers //Biophysical Journal. 2009. V.
96. P. 209-2016.130.Dasgupta R., Ahlawat S., Verma R. S., Uppal A., Gupta P. K. Hemoglobindegradation in human erythrocytes with long-duration near-infrared laserexposure inRaman optical tweezers // Journal of Biomedical Optics. 2010. V. 15. № 5. P.055009-1-055009-11.131.Svoboda K., Block S.M.
Biological applications of optical forces. // Annu. Rev.Biophys. Biomol. Struct., 1994. V. 23. P. 247-285.132.Carvalho F. A., Connell S., Miltenberger-Miltenyi G., Pereira S. N., Tavares A.,Ariens R. A. S., Santos N. C. Atomic force microscopy-based molecular recognition93of a fibrinogen receptor on human erythrocytes // ACS Nano. 2010. V. 4. №. 8. P.4609-4620.133.Lominadze D., Dean W. L. Involvement of fibrinogen specific binding in erythrocyteaggregation // FEBS Letters. 2002 V.
517. P. 41-44.134.Asakura S., Osawa F. On interaction between two bodies immersed in a solution ofmacromolecules // J.Chem. Phys. 1954. V. 22, P. 1255-1256.135.Armstrong J. K., Meiselman H. J., Fisher T. C. Covalent binding of poly(ethyleneglycol) (PEG) to the surface of red blood cells inhibits aggregation and reduces lowshear blood viscosity // Am. J. Hematol. 1997. V. 56. P. 26-28.136.Armstrong J. K., Meiselman H. J., Fisher T. C. Evidence against macromolecularbridging as the mechanism of red blood cell aggregation induced by nonionicpolymers // Biorheology. 1999.
V. 36. P. 433-437.137.Janzen J., Brooks D.E. A critical reevaluation of the non-specific adsorption of plasmaproteins and dextrans to erythrocytes and the role of these in rouleaux formation, Int.Phen. Biol. Sys. 39 (1991), 193-250.138.Ahmadi G. Hydrodynamic Forces. Clarkson University, New York, 2002.139.Lee K., Danilina A.V., Kinnunen M., Priezzhev A.V., Meglinski I. Probing the RedBlood Cells Aggregating Force with Optical Tweezers // Journal of Selected Topics inQuantum Electronics. 2016.
V. 22. № 3. P. 7000106.140.Lee K. Danilina A., Potkin A., Kinnunen M., Priezzhev A., Meglinski I. RBCaggregation dynamics in autologous plasma and serum studied with double channeloptical tweezers // SPIE Proceedings. 2016. In press.141.Lee K., Kinnunen M., Danilina A. V., Ustinov V. D., Shin S., Meglinski I. andPriezzhev A.
V. Characterization at the individual cell level and in whole blood94samples of shear stress preventing red blood cells aggregation. // Journal ofBiomechanics. 2016. In press (DOI: 10.1016/j.jbiomech.2016.02.011).142.Tozeren A., Sung K. L., Chien S. Theoretical and experimental studies on crossbridge migration during cell disaggregation // Biophys.
J. 1989. V. 55. № 3, P. 479487.143.Evans E., Leung A. Adhesivity and rigidity of erythrocyte membrane in relation towheat germ agglutinin binding // The Journal of Cell Biology. 1984. V. 98. P. 12011208.95.