Voir la notice de l'article provenant de la source Math-Net.Ru
@article{FPM_2009_15_5_a1, author = {V. V. Velichenko and D. A. Pritykin}, title = {Using of artificial intelligence and computer technologies for developing treatment programs for complex immune diseases}, journal = {Fundamentalʹna\^a i prikladna\^a matematika}, pages = {21--42}, publisher = {mathdoc}, volume = {15}, number = {5}, year = {2009}, language = {ru}, url = {http://geodesic.mathdoc.fr/item/FPM_2009_15_5_a1/} }
TY - JOUR AU - V. V. Velichenko AU - D. A. Pritykin TI - Using of artificial intelligence and computer technologies for developing treatment programs for complex immune diseases JO - Fundamentalʹnaâ i prikladnaâ matematika PY - 2009 SP - 21 EP - 42 VL - 15 IS - 5 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/FPM_2009_15_5_a1/ LA - ru ID - FPM_2009_15_5_a1 ER -
%0 Journal Article %A V. V. Velichenko %A D. A. Pritykin %T Using of artificial intelligence and computer technologies for developing treatment programs for complex immune diseases %J Fundamentalʹnaâ i prikladnaâ matematika %D 2009 %P 21-42 %V 15 %N 5 %I mathdoc %U http://geodesic.mathdoc.fr/item/FPM_2009_15_5_a1/ %G ru %F FPM_2009_15_5_a1
V. V. Velichenko; D. A. Pritykin. Using of artificial intelligence and computer technologies for developing treatment programs for complex immune diseases. Fundamentalʹnaâ i prikladnaâ matematika, Tome 15 (2009) no. 5, pp. 21-42. http://geodesic.mathdoc.fr/item/FPM_2009_15_5_a1/
[1] Bellman R., Matematicheskie metody v meditsine, Mir, M., 1987 | MR | Zbl
[2] Buldaev A. S., Pogozhev I. B., Optimizatsiya immunnogo protsessa po kriteriyu minimuma indeksa tyazhesti zabolevaniya, Preprint, Vychislitelnyi tsentr SO AN SSSR, Novosibirsk, 1986 | MR
[3] Velichenko V. V., “O zadachakh optimalnogo upravleniya dlya uravnenii s razryvnymi pravymi chastyami”, Avtomatika i telemekhanika, 1966, no. 7, 20–30 | MR
[4] Velichenko V. V., “Chislennyi metod resheniya zadach optimalnogo upravleniya”, ZhVMiMF, 6:4 (1966), 635–647 | Zbl
[5] Velichenko V. V., “Tekhnicheskii intellekt”, Intellekt. sist., 1 (1996), 1–4
[6] Velichenko V. V., Pritykin D. A., “Upravlenie lecheniem SPIDa”, Avtomatika i telemekhanika, 2006, no. 3, 166–185 | Zbl
[7] Velichenko V. V., Pritykin D. A., “Chislennye metody optimalnogo upravleniya dinamikoi VICh-infektsii”, Izv. RAN. Teoriya i sistemy upravleniya, 2006, no. 6, 53–64 | MR | Zbl
[8] Viner N., Kibernetika, ili upravlenie i svyaz v zhivotnom i mashine, Sovetskoe radio, M., 1958
[9] Galaktionov V. G., Immunologiya, Niva Rossii, M., 2000
[10] Marchuk G. I., Matematicheskie modeli v immunologii, Nauka, M., 1980 | MR
[11] Marchuk G. I., Romanyukha A. A., Bocharov G. A., “Matematicheskoe modelirovanie protivovirusnogo immunnogo otveta pri virusnom gepatite B”, Matematicheskie voprosy kibernetiki, 2, ed. S. V. Yablonskii, Nauka, M., 1989, 5–70 | MR
[12] R. Bellman (red.), Matematicheskie problemy v biologii, Mir, M., 1966 | MR
[13] Pokrovskii V. V., Ermak T. N., Belyaeva V. V. i dr., VICh-infektsiya. Klinika, diagnostika i lechenie, GEOTAR MEDITsINA, M., 2000
[14] Pontryagin L. S., Boltyanskii V. G., Gamkrelidze R. V., Mischenko E. F., Matematicheskaya teoriya optimalnykh protsessov, Fizmatgiz, M., 1961
[15] Butler S., Kirschner D., Lenhart S., “Optimal control of the chemotherapy affecting the infectivity of HIV”, Advances in Mathematical Population Dynamics Molecules, Cells and Man, eds. O. Arino, D. Axelrod, M. Kimmel, World Scientific Press, Singapore, 1997, 557–569 | Zbl
[16] Carpenter C. C., Cooper D. A., Fischl M. A., et al., “Updated recommendations of the International AIDS Society USA Panel”, JAMA, 283:3 (2000), 381–390 | DOI | MR
[17] Fischl M. A., Richman D. D., Crieco M. H., et al., “The efficacy of azidothymidine (AZT) in the treatment of patients with AIDS and AIDS-related complex. A double-blind, placebo-controlled trial”, N. Engl. J. Med., 317:4 (1987), 185–191 | DOI
[18] Joshi H. R., “Optimal control of an HIV immunology model”, Optimal Control Appl. Methods, 23 (2002), 199–213 | DOI | MR | Zbl
[19] Kirschner D., Lenhart S., Serbin S., “Optimal control of the chemotherapy of HIV”, J. Math. Biol., 35 (1997), 775–792 | DOI | MR | Zbl
[20] Shudo E., Iwasa Y., “Dynamic optimization of host defense, immune memory, and post-infection pathogen levels in mammals”, J. Theoret. Biol., 228 (2004), 17–29 | DOI
[21] Stengel R. F., Ghigliazza R., Rulkarni N., et al., “Optimal control of innate immune response”, Optimal Control Appl. Methods, 23 (2002), 91–104 | DOI | MR | Zbl
[22] Webb G. F., Kirschner D. E., “Using mathematics to understand HIV immune dynamics”, Notices Amer. Math. Soc., 43 (1996), 191–202 | MR
[23] Webb G. F., Kirschner D. E., “Resistance, remission, and qualitative differences in HIV chemotherapy”, Emerging Infectious Diseases, 3:3 (1997), 273–283 | DOI