Selected Publications:
1) Panfilov, A. V., Aliev, R. R. and Mushinsky, A. V. An integral
invariant for scroll rings in a reaction-diffusion system. Physica
D36, 181-188 (1989).
[Abstract]
[PDF 1.7M]
2) Pertsov, A. M., Aliev, R. R. and Krinsky, V. I. Three-dimensional
twisted vortices in an excitable chemical media. Nature 345,
419-421 (1990).
[Abstract]
[PDF 350k]
3) Aliev, R. R. and Agladze, K. I. Critical conditions of chemical
wave propagation in gel layers with an immobilized catalyst. Physica
D50, 65-70 (1991).
[Abstract]
[PDF 360k]
4) Perez-Munuzuri, V., Aliev, R., Vasiev, B., Perez-Vilar, V. and Krinsky,
V. I. Super-spiral structures in an excitable medium. Nature 353,
740-742 (1991).
[Abstract]
[PDF 500k]
5) Aliev, R. R. and Rovinsky, A. B., Spiral waves in the homogeneous
and inhomogeneous Belousov-Zhabotinsky reaction. J.Phys.Chem. 96,
732-736 (1992).
[Abstract]
[PDF 1.2M]
6) Perez-Munuzuri, V., Aliev, R., Vasiev, B. and Krinsky, V. I. Electric
current control of spiral waves dynamics. Physica D56, 229-234
(1992).
[Abstract]
[PDF 430k]
7) Mornev. O. A., Panfilov, A. V. and Aliev, R. R. FitzHugh-Nagumo
equations are a gradient system. Biofizika (Rus.), 37(1), 123-125
(1992).
[Abstract]
8) Starmer, C. F., Krinsky, V. I., Romashko, D. N., Aliev, R. R., Stepanov, M. R. Rotating vortex initiation in excitable media: pulse chemistry control. in: Spatio-Temporal Organization in Nonequilibrium Systems, eds. Mueller,S.C. and Plesser,T. (Project Verlag, 1992 ).
9) Starmer, C. F., Krinsky, V. I., Tong, F. C., Romashko, D. N., Aliev, R. R. Burashnikov, A.Y. and Stepanov, M.R. Role of channel blockade in promoting the initiation of rotating vortices in cardiac muscle. Proceedings of Computers in Cardiology, 55-58 (1992).
10) Aliev, R. R. Oscillation Phase Dynamics in the Belousov- Zhabotinsky
reaction. Implementation to Image Processing. J.Phys.Chem. 98(15),
3999-4002 (1994).
[Abstract] [Article (PS.gz, 465k)]
[PDF,1.6M]
11) Aliev, R. R. and Biktashev, V. N. Dynamics of the Oscillation
Phase Distribution in the BZ Reaction. J.Phys.Chem. 98(38),
9676 - 9681 (1994).
[Abstract] [Article (PS.gz, 177k)]
[PDF,1.7M]
12) Chaylakhyan, L. M., Starmer, C. F., Aliev, R. R. and Medvinsky, A. B. Novel approaches to science organization: the project "Lab without Walls". Herold of the Russian Academy of Sciences ( Vestnik Akademii Nauk), 64, 808-809 (1994) (in Russian).
13) Aliev, R. R. Heart Tissue Simulations by Means of Chemical Excitable
Media. Chaos, Solitons and Fractals 5(3,4), 567-574 (1995).
[Abstract]
[ Article (PDF, 810k)]
14) Aliev, R. R. and Vasiev, B. N. Phase Breaks and Chaos in a Chain
of Diffusively Coupled Oscillators. Chaos, Solitons and Fractals 5(3,4),
439-445 (1995).
[Abstract]
[ Article (PDF, 652k)]
15) Aliev, R. R. and Panfilov, A. V. Multiple responses at the boundaries
of the vulnerable window in the Belousov-Zhabotinsky reaction. Phys.
Rev. E 52(3), 2287-2293 (1995).
[Abstract]
[Article (PS.gz, 342k)]
[Article (PDF, 557k)]
16) Mornev, O. A. and Aliev, R. R. Local variational principle of
minimum dissipation in the dynamics of reaction-diffusion systems.
Russ. J. Phys. Chem. 69(8), 1325-1328 (1995).
[Abstract]
17) Aliev, R. R. Phase-rotors in an active medium. Phys. of Alive,
4(1), 27-31 (1996).
[Abstract] [Article
(PS.gz, 203k)]
18) Aliev, R. R. and Panfilov, A. V. A simple two-variable model
of cardiac excitation. Chaos, Solitons and Fractals, 7(3) 293-301
(1996).
[Abstract]
[Article (PS.gz, 135k)]
[Article (PDF, 486k)]
19) Aliev, R. R. and Panfilov, A. V. Modeling of Heart Excitation
Patterns caused by a Local Inhomogeneity. J. Theor. Biol., 181(1),
33-40 (1996).
[Abstract]
[Article (PDF, 1500k)]
[Article (PS.gz, 202k)]
20) Aliev, R. R., Amemiya, T. and Yamaguchi, T. Bifurcation of Vortices
in the Light-Sensitive Oscillatory BZ Medium. Chem. Phys. Lett., 257(5,6),
552-556 (1996).
[Abstract]
[Article (PS.gz, 625k)]
[Article (PDF, 274k)]
21) Mornev, O. A., Aslanidi, O. V., Aliev, R. R. and Chailakhian, L. M. Soliton-like regime in FitzHugh-Nagumo equations: reflection of colliding pulses of excitation. Proc. Russ. Acad. Sci., 347(1), 123-125 (1996).
22) Tsyganov, I. M., Aliev, R. R. and Ivanitsky, G. R. Dissipative
pulsars in excitable media. Proc. Russ. Acad. Sci. 352(5), 699-703
(1997).
[Abstract]
23) Agladze, K. I., Aliev, R. R., Yamaguchi, T. and Yoshikawa, K. Chemical
Diode. J. Phys. Chem. 100(33), 13895-13897 (1996).
[Abstract]
[Article (PS.gz, 515k)]
[PDF,276K]
24) Aliev, R. R., Davydov, V. A., Ohmori, T., Nakaiwa, M. and Yamaguchi,
T. Change of the shape of a chemical vortex due to a local disturbance.
J. Phys. Chem. 101, 1313-1316 (1997).
[Abstract] [Article
(PS.gz, 410k)] [
Text (html) ]
25) Aliev, R. R., Davydov, V. A., Kusumi, T. and Yamaguchi,
T. Long Range Interaction of Vortices in a Chemical Active
Medium. Netsu Sokutei 24(4), 194-198 (1997).
[Abstract]
26) Aliev, R. R., Yamaguchi, T. and Kuramoto, Y. On the Phase Dynamics
in the BZ Reaction J. Phys. Chem. A, 101 (42), 7691-7694 (1997).
[Abstract] [Article
(PDF, 158k)] [
Text (html) ]
27) Agladze, K., Magome, N., Aliev, R., Yamaguchi, T., Yoshikawa, K.
Finding the optimal path with the aid of chemical wave.
Physica D106 (3-4) 247-254 (1997).
[Abstract]
[Article (PDF, 493k)]
28) Kusumi, T., Yamaguchi, T., Aliev, R.R., Amemiya, T., Ohmori, T., Hashimoto, H. and Yoshikawa, K.
Numerical study on time delay for chemical wave transmission via an inactive gap.
Chem. Phys. Lett., 271(4-6), 355-360 (1997).
[Abstract]
[Article (PDF, 274k)]
29) Yamaguchi, T., Kusumi, T., Aliev, R. R., Amemiya, T., Ohmori, T., Nakaiwa, M., Urabe, K., Kinugasa, S., Hashimoto, H. and Yoshikawa, K.
Unidirectionality of Chemical Diode.
ACH - Models in Chemistry, 135 (3), 401-408 (1998).
[Abstract]
30) Aliev, R., Richards, W., Wikswo, J.
A Simple Nonlinear Model of Electrical Activity in the Intestine.
J. Theor. Biol., 204, 21-28 (2000).
[Abstract]
[Article (PDF, 240k)]
31) Bray, M., Shien-Fong Lin, Aliev, R., Roth, B., Wikswo, J.,
Experimental and Theoretical Analysis of Phase Singularity Dynamics in Cardiac Tissue
J. Cardiovasc. Electrophysiology, 12(6), 716-722 (2001).
[Abstract]
[Article (PDF, 780k)]
32) A. B. Medvinsky, I. A. Tikhonova, R. R. Aliev, Bai-Lian
Li, Zhen-Shan Lin, and H. Malchow.,
Patchy environment as a factor of complex plankton dynamics.
Phys. Rev. E, 64(2), 0219515 (2001).
[Abstract]
[Article (PDF, 516k)]
33) Русаков А.В., Алиев Р.Р., Панфилов А.В., Медвинский А.Б. Неустойчивость трехмерного свитка в простой модели гетерогенной возбудимой среды. Биофизика. 2002. Т. 47. В. 1. С. 111-115.
34) V. Y. Sidorov, R. R. Aliev, M. C. Woods, F. Baudenbacher, P. Baudenbacher, and J. P. Wikswo.
Spatiotemporal Dynamics of Damped Propagation in Excitable Cardiac Tissue.
Phys. Rev. Lett., 91(20), 208104-4 (2003).
[Abstract]
[Article (PDF, 360k)]
35) Fedorov V.V., Aliev R.R., Glukhov A.V., Resnik A.V., Anufriev A., Ivanova I.A., Nakipova O.V., Kolaeva S.G., Rosenshtraukh L.V., Efimov I.R. Cardiac conduction and resistance to ventricular fibrillation in Siberian hibernator ground squirrels Citellus Undulatus. Life in Cold: Evolution, Mechanisms Adaptation, and Application. Biological Paper of the University of Alaska, 2004; 27: 543 - 556.
36) Алиев Р.Р., Федоров В.В., Розенштраух Л.В. Исследование влияния
ацетилхолина на ионные токи в одиночных клетках истинных и латентных
водителей ритма синусового узла кролика методом компьютерного
моделирования.
ДАН 397(5), стр. 697-700 (2004).
[Article (PDF, 3.2M)]
in English:
R. R. Aliev, V. V. Fedorov and L. V. Rozenshtraukh.
Study of the Effect of Acetylcholine on Ion Currents in Single Cells of
True and Latent Pacemakers of Rabbit Sinus Node using Computer Simulation.
Doklady Bio.Sci. 397, 288-291 (2004).
[Abstract]
[Article (PDF, 72k)]
37)Fedorov VV, Kuryshev Y, Glukhov AV, Aliev RR, Ivanova IM, Nikolski VP, Rosenshtraukh LV, Efimov IR. Cellular uncoupling due to gap junction remodeling is associated with safe conduction during hypothermia in hearts of Siberian hibernating ground squirrel Citellus undulatus. Circulation 110 (17): 98-99, 2004.
38) Алиев Р.Р., Федоров В.В., Розенштраух Л.В. Исследование влияния
ацетилхолина на возбудимость клеток истинных водителей ритма синусового узла
кролика методом компьютерного моделирования.
ДАН 402(4), 548-550 (2005).
in English:
R. R. Aliev, V. V. Fedorov and L. V. Rozenshtraukh.
Study of the Effect of Acetylcholine on the Excitability of True Pacemaker
Cells of Rabbit Sinus Node Using Computer Simulation.
Doklady Bio.Sci. 402, 223-225, (2005).
[Article (PDF, 144k)]
39) Алиев Р.Р., Чайлахян Л.М. Исследование влияния ацетилхолина на
внутриклеточный гомеостаз истинных водителей ритма синусового узла кролика
методом компьютерного моделирования.
ДАН 402(5), 689-692 (2005).
in English:
R. R. Aliev, L. M. Chailakhyan.
Study of the Effect of Acetylcholine on Intracellular Homeostasis of
True Pacemaker Cells of Rabbit Sinus Node Using Computer Simulation.
Doklady Bio.Sci. 402, 236-239, (2005).
[Article (PDF, 216k)]
40) Алиев Р.Р., Чайлахян Л.М. Исследование преавтоматической паузы под
действием ацетилхолина в клетках истинных водителей ритма синусового узла
кролика методом компьютерного моделирования.
ДАН 402(6), 828-830 (2005).
in English:
R. R. Aliev, L. M. Chailakhyan.
Study of the Preautomatic Pause under Exposure to Acetylcholine in
True Pacemaker Cells of Rabbit Sinus Node Using Computer Simulation.
Doklady Bio.Sci. 402, 251-253, (2005).
[Article (PDF, 148k)]
41) Л.В. Розенштраух, В.В. Федоров, Р.Р. Алиев, А.В. Глухов, Т.В.Михеева,
А.В.Резник, Ефимов И.Р. Изучение характера активации изолированного сердца
гибернирующего суслика undulatus. Первый опыт оптического картирования
сердца в России.
Кардиология 4, 4-10 (2005).
[Article (PDF, 2.5M)]
42) VV. Fedorov, Li Li, A Glukhov, I Shishkina, RR. Aliev, T Mikheeva,
VP Nikolski, LV. Rosenshtraukh, IR Efimov. Hibernator Citellus undulatus
maintains safe cardiac conduction and is protected against tachyarrhythmias
during extreme hypothermia: Possible role of Cx43 and Cx45 up-regulation.
Heart Rhythm 2, 966-975 (2005).
[Article (PDF, 720k)]