|
|
Most published authors (scientific articles only) of the journal
|
| 1. |
V. D. Lakhno |
49 |
| 2. |
M. N. Ustinin |
29 |
| 3. |
N. N. Nazipova |
22 |
| 4. |
S. D. Rykunov |
22 |
| 5. |
E. Ya. Frisman |
21 |
| 6. |
V. Yu. Lunin |
18 |
| 7. |
V. V. Panyukov |
17 |
| 8. |
D. A. Tikhonov |
17 |
| 9. |
G. P. Neverova |
16 |
| 10. |
O. N. Ozoline |
16 |
| 11. |
V. S. Bystrov |
15 |
| 12. |
T. E. Petrova |
15 |
| 13. |
A. M. Andrianov |
14 |
| 14. |
V. A. Kutyrkin |
14 |
| 15. |
V. A. Likhoshvai |
14 |
| 16. |
M. B. Chaley |
14 |
| 17. |
N. L. Lunina |
13 |
| 18. |
T. M. Khlebodarova |
13 |
| 19. |
A. I. Boyko |
12 |
| 20. |
N. V. Zaitseva |
12 |
| 21. |
E. A. Isaev |
12 |
| 22. |
A. N. Korshounova |
12 |
| 23. |
A. E. Medvedev |
12 |
| 24. |
P. V. Trusov |
12 |
| 25. |
A. V. Tuzikov |
12 |
| 26. |
N. S. Fialko |
12 |
| 27. |
A. I. Abakumov |
12 |
| 28. |
N. V. Pertsev |
12 |
| 29. |
G. A. Vinogradov |
11 |
| 30. |
A. V. Efimov |
10 |
| 31. |
S. S. Kiselev |
10 |
| 32. |
F. A. Kolpakov |
10 |
| 33. |
L. I. Kulikova |
10 |
| 34. |
E. V. Sobolev |
10 |
| 35. |
O. F. Voropaeva |
9 |
| 36. |
A. A. Zimin |
9 |
| 37. |
I. V. Likhachev |
9 |
| 38. |
K. K. Loginov |
9 |
| 39. |
E. V. Paramonova |
9 |
| 40. |
K. S. Shavkunov |
9 |
|
20 most published authors of the journal |
|
| Most cited authors of the journal |
| 1. |
V. D. Lakhno |
157 |
| 2. |
M. N. Ustinin |
115 |
| 3. |
E. Ya. Frisman |
92 |
| 4. |
D. A. Tikhonov |
83 |
| 5. |
G. P. Neverova |
74 |
| 6. |
V. S. Bystrov |
70 |
| 7. |
A. V. Efimov |
69 |
| 8. |
N. N. Nazipova |
69 |
| 9. |
L. I. Kulikova |
68 |
| 10. |
A. I. Abakumov |
68 |
| 11. |
S. D. Rykunov |
65 |
| 12. |
E. A. Isaev |
57 |
| 13. |
N. V. Zaitseva |
52 |
| 14. |
P. V. Trusov |
52 |
| 15. |
N. Adlakha |
49 |
| 16. |
M. Yu. Cinker |
49 |
| 17. |
A. N. Korshounova |
47 |
| 18. |
N. V. Pertsev |
43 |
| 19. |
R. Llinás |
42 |
| 20. |
O. N. Ozoline |
41 |
| 21. |
V. V. Kornilov |
40 |
| 22. |
A. A. Romanyukha |
38 |
| 23. |
V. A. Kutyrkin |
37 |
| 24. |
M. B. Chaley |
37 |
| 25. |
S. S. Bykhovets |
36 |
| 26. |
V. Yu. Lunin |
35 |
| 27. |
A. E. Medvedev |
35 |
| 28. |
V. V. Panyukov |
35 |
| 29. |
Yu. E. El'kin |
33 |
| 30. |
F. A. Kolpakov |
33 |
| 31. |
V. N. Shanin |
33 |
| 32. |
N. S. Fialko |
32 |
| 33. |
T. E. Petrova |
31 |
| 34. |
V. V. Sytchev |
31 |
| 35. |
L. V. Yakushevich |
31 |
| 36. |
M. P. Kulakov |
30 |
| 37. |
N. L. Lunina |
30 |
| 38. |
O. G. Chertov |
30 |
| 39. |
S. S. Kiselev |
29 |
| 40. |
V. A. Likhoshvai |
28 |
| 41. |
K. K. Loginov |
28 |
| 42. |
E. V. Paramonova |
28 |
|
20 most cited authors of the journal |
|
| Most cited articles of the journal |
| 1. |
Nonlinear dynamic modeling of 2-dimensional interdependent calcium and inositol 1,4,5-trisphosphate in cardiac myocyte Nisha Singh, Neeru Adlakha Mat. Biolog. Bioinform., 2019, 14:1, 290–305 |
26 |
| 2. |
Modeling of human breath: conceptual and mathematical statements P. V. Trusov, N. V. Zaitseva, M. Yu. Tsinker Mat. Biolog. Bioinform., 2016, 11:1, 64–80 |
24 |
| 3. |
Simulation of buffered advection diffusion of calcium in a hepatocyte cell Y. D. Jagtap, N. Adlakha Mat. Biolog. Bioinform., 2018, 13:2, 609–619 |
23 |
| 4. |
Chiral peculiar properties of self-organization of diphenylalanine peptide nanotubes: modeling of structure and properties V. S. Bystrov, P. S. Zelenovskiy, A. S. Nuraeva, S. Kopyl, O. A. Zhulyabina, V. A. Tverdislov Mat. Biolog. Bioinform., 2019, 14:1, 94–125 |
18 |
| 5. |
Statistical analysis of the internal distances of helical pairs in protein molecules D. A. Tikhonov, L. I. Kulikova, A. V. Efimov Mat. Biolog. Bioinform., 2016, 11:2, 170–190 |
17 |
| 6. |
Mathematical models of tuberculosis extension and control of it (review) K. K. Avilov, A. A. Romanyukha Mat. Biolog. Bioinform., 2007, 2:2, 188–318 |
17 |
| 7. |
Autowave processes Yu. E. El'kin Mat. Biolog. Bioinform., 2006, 1:1, 27–40 |
17 |
| 8. |
Modeling of insect-pathogen dynamics with biological control S. Saha, G. Samanta Mat. Biolog. Bioinform., 2020, 15:2, 268–294 |
16 |
| 9. |
Computational studies of the hydroxyapatite nanostructures, peculiarities and properties V. S. Bystrov Mat. Biolog. Bioinform., 2017, 12:1, 14–54 |
16 |
| 10. |
The harvesting effect on a fish population A. I. Abakumov, Yu. G. Izrailsky Mat. Biolog. Bioinform., 2016, 11:2, 191–204 |
16 |
| 11. |
Numerical algorithms for diffusion coefficient identification in problems of tissue engineering A. V. Penenko, S. N. Nikolaev, S. Golushko, A. V. Romashenko, I. A. Kirilova Mat. Biolog. Bioinform., 2016, 11:2, 426–444 |
16 |
| 12. |
Theoretical and experimental investigations of DNA open states A. S. Shigaev, O. A. Ponomarev, V. D. Lakhno Mat. Biolog. Bioinform., 2018, 13:Suppl., 162–267 |
15 |
| 13. |
Software for the partial spectroscopy of human brain S. D. Rykunov, M. N. Ustinin, A. G. Polyanin, V. V. Sytchev, R. R. Llinás Mat. Biolog. Bioinform., 2016, 11:1, 127–140 |
15 |
| 14. |
On the DNA kink motion under the action of constant torque L. V. Yakushevich, V. N. Balashova, F. K. Zakiryanov Mat. Biolog. Bioinform., 2016, 11:1, 81–90 |
14 |
| 15. |
Modeling of bacterial communication in the extended range of population dynamics Y. Shuai, A. G. Maslovskaya, C. Kuttler Mat. Biolog. Bioinform., 2023, 18:1, 89–104 |
13 |
| 16. |
The study of interhelical angles in the structural motifs formed by two helices D. A. Tikhonov, L. I. Kulikova, A. V. Efimov Mat. Biolog. Bioinform., 2017, 12:1, 83–101 |
13 |
| 17. |
Dynamic modes of exploited limited population: results of modeling and numerical study G. P. Neverova, A. I. Abakumov, E. Ya. Frisman Mat. Biolog. Bioinform., 2016, 11:1, 1–13 |
13 |
| 18. |
A fractional epidemic model with Mittag-Leffler kernel for COVID-19 Hassan Aghdaoui, Mouhcine Tilioua, Kottakkaran Sooppy Nisar, Ilyas Khan Mat. Biolog. Bioinform., 2021, 16:1, 39–56 |
12 |
| 19. |
Dynamics of large radius polaron in a model polynucleotide chain with random perturbations N. S. Fialko, V. D. Lakhno Mat. Biolog. Bioinform., 2019, 14:2, 406–419 |
12 |
| 20. |
Effects of the аspen short-rotation plantation on the C and N biological cycles in boreal forests: the model experiment A. S. Komarov, O. G. Chertov, S. S. Bykhovets, I. V. Priputina, V. N. Shanin, E. O. Vidyagina, V. G. Lebedev, K. A. Shestibratov Mat. Biolog. Bioinform., 2015, 10:2, 398–415 |
12 |
| 21. |
Formation of stationary electronic states in finite homogeneous molecular chains V. D. Lakhno, A. N. Korshounova Mat. Biolog. Bioinform., 2010, 5:1, 1–29 |
12 |
| 22. |
Mathematical model of airflow and solid particles transport in the human nasal cavity P. V. Trusov, N. V. Zaitseva, M. Yu. Cinker, A. V. Nekrasova Mat. Biolog. Bioinform., 2021, 16:2, 349–366 |
11 |
| 23. |
Transmission of acute respiratory infections in a city: agent-based approach A. I. Vlad, T. E. Sannikova, A. A. Romanyukha Mat. Biolog. Bioinform., 2020, 15:2, 338–356 |
11 |
| 24. |
The application of a distributed model of active media for the analysis of urban ecosystems development A. E. Sidorova, N. T. Levashova, A. E. Semina, A. A. Melnikova Mat. Biolog. Bioinform., 2018, 13:2, 454–465 |
11 |
| 25. |
Analysis of the torsion angles between helical axes in pairs of helices in protein molecules D. A. Tikhonov, L. I. Kulikova, A. V. Efimov Mat. Biolog. Bioinform., 2017, 12:2, 398–410 |
11 |
| 26. |
The peculiarities of polaron motion in the molecular polynucleotide chains of finite length in the presence of localized excitations in the chain A. N. Korshunova, V. D. Lakhno Mat. Biolog. Bioinform., 2017, 12:1, 204–224 |
11 |
| 27. |
Analytical design of the human bronchial tree for healthy patients and patients with obstructive pulmonary diseases A. E. Medvedev, P. S. Gafurova Mat. Biolog. Bioinform., 2019, 14:2, 635–648 |
10 |
| 28. |
Stochastic Modeling of Compartmental Systems with Pipes K. K. Loginov, N. V. Pertsev, V. A. Topchii Mat. Biolog. Bioinform., 2019, 14:1, 188–203 |
10 |
| 29. |
Big Data in bioinformatics N. N. Nazipova, E. A. Isaev, V. V. Kornilov, D. V. Pervukhin, A. A. Morozova, A. A. Gorbunov, M. N. Ustinin Mat. Biolog. Bioinform., 2018, 13:Suppl., 1–16 |
10 |
| 30. |
Markov chain Monte Carlo parameter estimation of the ODE compartmental cell growth model T. Luzyanina, G. Bocharov Mat. Biolog. Bioinform., 2018, 13:2, 376–391 |
10 |
| 31. |
Comparative analysis of methods for estimation of undirected coupling from time series of intracranial EEGs of cortex of rats-genetic models of absence epilepsy A. A. Grishchenko, C. M. van Rijn, I. V. Sysoev Mat. Biolog. Bioinform., 2017, 12:2, 317–326 |
10 |
| 32. |
Dynamic modes of limited structured population under age specific harvest G. P. Neverova, A. I. Abakumov, E. Ya. Frisman Mat. Biolog. Bioinform., 2017, 12:2, 327–342 |
10 |
| 33. |
Spontaneous halt of spiral wave drift in homogeneous excitable media Yu. E. El'kin, A. V. Moskalenko, Ch. F. Starmer Mat. Biolog. Bioinform., 2007, 2:1, 73–81 |
10 |
| 34. |
Data center efficiency model: A new approach and the role of artificial intelligence E. A. Isaev, V. V. Kornilov, A. A. Grigor'ev Mat. Biolog. Bioinform., 2023, 18:1, 215–227 |
9 |
| 35. |
The use of optimal partitionings for multiparameter data analysis in clinical trials R. R. Guliev, O. V. Senko, D. A. Zateishchikov, V. V. Nosikov, I. V. Uporov, A. V. Kuznetsova, M. A. Evdokimova, S. N. Tereshchenko, E. V. Akatova, M. G. Glaser, A. S. Galyavich, N. A. Koziolova, A. V. Yagoda, O. I. Boeva, S. V. Shlyk, S. Yu. Levashov, V. O. Konstantinov, V. A. Brazhnik, S. D. Varfolomeev, I. N. Kurochkin Mat. Biolog. Bioinform., 2016, 11:1, 46–63 |
9 |
| 36. |
Dynamic regimes of local homogeneous population with delayed density dependence G. P. Neverova, E. Ya. Frisman Mat. Biolog. Bioinform., 2015, 10:2, 309–324 |
9 |
| 37. |
New Methodology for the Analysis and Representation of Human Brain Function: MEGMRIAn M. N. Ustinin, V. V. Sychev, K. D. Walton, R. R. Llinás Mat. Biolog. Bioinform., 2014, 9:2, 464–481 |
9 |
| 38. |
Mixed promoter islands as genomic regions with specific structural and functional properties V. V. Panyukov, S. S. Kiselev, K. S. Shavkunov, I. S. Masulis, O. N. Ozoline Mat. Biolog. Bioinform., 2013, 8:2, 432–448 |
9 |
| 39. |
Modular Modeling of the Human Cardiovascular System I. N. Kiselev, B. V. Semisalov, E. A. Biberdorf, R. N. Sharipov, A. M. Blokhin, F. A. Kolpakov Mat. Biolog. Bioinform., 2012, 7:2, 703–736 |
9 |
| 40. |
Mathematical model of phase coding of events in the brain V. D. Tsukerman Mat. Biolog. Bioinform., 2006, 1:1, 97–107 |
9 |
|
20 most cited articles of the journal |
|
| Most requested articles of the journal |
|
|
| 1. |
Computer-aided design of the potential drugs for AIDS therapy: $\beta$-galactosylceramide and the HIV-1 gp120 V3 Loop I. V. Anishchenko, A. V. Tuzikov, A. M. Andrianov Mat. Biolog. Bioinform., 2011, 6:2, 161–172 | 3 |
| 2. |
Application of the Aho–Corasick algorithm for the selection of primers for loop isothermal amplification L. U. Akhmetzianova, T. M. Davletkulov, R. R. Garafutdinov, I. M. Gubaydullin Mat. Biolog. Bioinform., 2022, 17:2, 250–265 | 3 |
| 3. |
How animals find their way in space. Experiments and modeling Yakov Kazanovich, Ivan E. Mysin Mat. Biolog. Bioinform., 2018, 13:Suppl., 132–161 | 2 |
| 4. |
Bacterial nucleoid protein Dps binds structured RNA molecules A. A. Bykov, K. S. Shavkunov, V. V. Panyukov, O. N. Ozoline Mat. Biolog. Bioinform., 2016, 11:2, 311–322 | 2 |
| 5. |
Molecular Mechanisms of Caffeine Biological Effects. Computer Simulation of Competition with Adenosine for Binding Sites of Receptors A. S. Deriabina, E. Rodriguez, E. Gonzalez, M. S. Deryabin, J. N. Herrera, C. Sanchez, V. I. Poltev Mat. Biolog. Bioinform., 2014, 9:2, 373–385 | 2 |
| 6. |
On reconstitution of smooth distributions from grouped data K. K. Avilov Mat. Biolog. Bioinform., 2016, 11:2, 367–384 | 2 |
| 7. |
The study of interhelical angles in the structural motifs formed by two helices D. A. Tikhonov, L. I. Kulikova, A. V. Efimov Mat. Biolog. Bioinform., 2019, 14:Suppl., 1–17 | 2 |
| 8. |
Structural-statistical properties of DNA coding regions V. A. Kutyrkin, M. B. Chaley Mat. Biolog. Bioinform., 2015, 10:2, 387–397 | 2 |
| 9. |
The influence of trophic interactions in the plankton community on its spatiotemporal dynamics E. E. Giricheva Mat. Biolog. Bioinform., 2019, 14:2, 393–405 | 2 |
| 10. |
The peculiarities of polaron motion in the molecular polynucleotide chains of finite length A. N. Korshunova, V. D. Lakhno Mat. Biolog. Bioinform., 2016, 11:2, 141–158 | 2 |
|
| Total publications: |
644 |
| Scientific articles: |
640 |
| Authors: |
1008 |
| Citations: |
1658 |
| Cited articles: |
436 |
 |
Scopus Metrics |
|
2025 |
CiteScore |
0.900 |
|
2025 |
SNIP |
0.401 |
|
2025 |
SJR |
0.144 |
|
2024 |
CiteScore |
1.000 |
|
2024 |
SNIP |
0.494 |
|
2024 |
SJR |
0.143 |
|
2023 |
CiteScore |
1.100 |
|
2023 |
SNIP |
0.318 |
|
2023 |
SJR |
0.165 |
|
2022 |
SJR |
0.182 |
|
2021 |
SJR |
0.176 |
|
2020 |
SJR |
0.154 |
|
2019 |
SJR |
0.123 |
|
2018 |
CiteScore |
0.490 |
|
2018 |
SJR |
0.195 |
|
2017 |
CiteScore |
0.180 |
|
2017 |
SNIP |
0.121 |
|
2017 |
SJR |
0.136 |
|
2016 |
CiteScore |
0.220 |
|
2016 |
SNIP |
0.341 |
|
2016 |
SJR |
0.207 |
|
2015 |
CiteScore |
0.200 |
|
2015 |
SNIP |
0.217 |
|
2015 |
IPP |
0.148 |
|
2015 |
SJR |
0.128 |
|
2014 |
CiteScore |
0.160 |
|
2014 |
SNIP |
0.198 |
|
2014 |
IPP |
0.171 |
|
2014 |
SJR |
0.172 |
|
2013 |
SNIP |
0.041 |
|
2013 |
IPP |
0.063 |
|
2013 |
SJR |
0.126 |
|