1. Avtsin AP, Zhavoronkov AA, Rish MA, Strochkova LS. Mikroelementozy cheloveka. Moskow: Meditsina; 1991. 496 p. Russian. |
|
2. Alidzhanova IE, Notova SV, Kiiaeva EV. Vliianie stressornykh faktorov razlichnoi prirody na nakoplenie khimicheskikh elementov v tele laboratornykh zhivotnykh. Vestnik OGU. 2010;12:18—21. Russian. |
|
3. Bol’shakov AM, Maimulov VG. Gigienicheskoe reglamentirovanie — osnova sanitarno—epidemiologicheskogo blagopoluchiia naseleniia. Moskow: GEOTAR — Media; 2009. 211 p. Russian. |
|
4. Bol’shakov AM, Maimulov VG. Obshchaia gigiena. Moskow: GEOTAR — Media; 2006. 729 p. Russian. |
|
5 Gorbachev AL, Lugovaia EA, Bul’ban AP. Osnovy bioelementologii. Magadan: Izd-vo SVGU; 2007. 73 p. Russian. |
|
6. Zakrevskii VV. Bezopasnost’ pishchevykh produktov i biologicheski aktivnykh dobavok k pishche. Moskow: Forum — Infra; 2008. 393 p. Russian. |
|
7 Kiku PF, Gel’tser BI. Ekologicheskie problemy zdorov’ia. Vladivostok: Dal’Nauka; 2004. 228 p. Russian. |
|
8 Korchina TIa. Bioticheskii obmen veshchestv i elementnyi portret cheloveka. Ekologiia cheloveka. 2007;3:32—36. Russian. |
|
9 Kudrin AV. Mikroelementy v onkologii. Chast’ 1. Mikroelementy v opukholiakh.Mikroelementy v meditsine. 2001;2(1):11 — 16. Russian. |
|
10. Kudrin AV, Skal’nyi AV, Zhavoronkov AA, Skal’naia MG, Gromova OA. Immunofarmakologiia mikroelementov. Moskow: KMK; 2000. 576 p. Russian. |
|
11. Pshendin PI. Ratsional’noe pitanie sportsmenov. SPb.: Olimp-SPb; 2003. Russian. |
|
12. Rudakov IA, Egorova GA, Skal’nyi AV, Shits IV. Koeffitsient statisticheskoi nestabil’nosti — dopolnitel’nyi kriterii pri otsenke rezul’tatov mnogoelementnogo analiza volos. Mikroelementy v meditsine. 2006;7(4):1—6. Russian. |
|
13. Skal’nyi AV, Miroshnikov SA, Notova SV, Bolodurina IP, Miroshnikov SV, Alidzhanova IE. Regional’nye osobennosti elementnogo gomeostaza kak pokazatel’ ekologo-fiziologicheskoi adaptatsii. Ekologiia cheloveka. 2014;9:14—17. Russian. |
|
14. Borah S, Baruah AM, Das AK, Borah J. Determination of mineral content in commonly consumed leafy vegetables. Food Anal Methods. 2009;2:226—230.
https://doi.org/10.1007/s12161-008-9062-z |
|
15. Burdge GC, Lillycrop KA. Nutrition, epigenetics, and developmental plasticity: implications for understanding human disease. Annu Rev Nutr. 2010;30:315—339.
https://doi.org/10.1146/annurev.nutr.012809.104751
PMid:20415585 |
|
16. Cano NJM, Aparicio M, Brunori G, et al. ESPEN guidelines on parenteral nutrition: adult renal failure. Clinical Nutrition. 2009;28(4):401—414.
https://doi.org/10.1016/j.clnu.2009.05.016
PMid:19535181 |
|
17. Dudrick SJ. History of parenteral nutrition. Journal of the American College of Nutrition. 2009;28(3):243—251.
https://doi.org/10.1080/07315724.2009.10719778
PMid:20150597 |
|
18. Grandjean P, Bellinger D, Bergman A, Cordier S, Davey-Smith G, Eskenazi B, et al. The faroes statement: human health effects of developmental exposure to chemicals in our environment. Basic Clin Pharmacol Toxicol. 2008;102:73—75.
PMid:18226057 |
|
19. Grabeklis AR, Skalny AV. Hair elemental content of teenagers: influence of physiological and ecological factors. Mykroelementy v medytsyne. 2003;4(3):25—31. |
|
20. Kambe T, Hashimoto A, Fujimoto S. Current understanding of zip and znt zinc transporters in human health and diseases. Cell Mol Life Sci. 2014;71:3281—3295.
https://doi.org/10.1007/s00018-014-1617-0
PMid:24710731 |
|
21. Kontic-Vucinic O, Sulovic N, Radunovic N. Micronutrients in women’s reproductive health: II. Minerals and trace elements. Int J Fertil Womens Med. 2006;51:116—124.
PMid:17039855 |
|
22. Martin Re, Mahan Dc, Hill Gm, Link Je And Jolliff Js. Effect of dietary organic microminerals on starter pig performance, tissue mineral concentrations, and liver and plasma enzyme activities. J Anim Sci. 2011;4:1042—1055. |
|
23 Mertz W. The essential trace elements. Science. 1981;213:1332—1338.
https://doi.org/10.1126/science.7022654 |
|
24. Mistry HD, Kurlak LO, Young SD, Briley AL, Pipkin FB, Baker PN, et al. Maternal selenium, copper and zinc concentrations in pregnancy associated with small-for-gestational-age infants. Matern Child Nutr. 2014;10:327—334.
https://doi.org/10.1111/j.1740-8709.2012.00430.x
PMid:22784110 |
|
25. Ozdemir U, Gulturk S, Aker A, Guvenal T, Imir G, Erselcan T. Correlation between birth weight, leptin, zinc and copper levels in maternal and cord blood. J Physiol Biochem. 2007;63:121—128.
https://doi.org/10.1007/BF03168223
PMid:17933386 |
|
26. Schöne BR, Radermacher P, Zhang Z, Jacob DE. Crystal fabrics and element impurities (Sr/Ca, Mg/Ca, and Ba/Ca) in shells of Arctica islandica —Implications for paleoclimate reconstructions. Palaeogeogr., Palaeoclimatol., Palaeoecol. 2013;373:50—59.
https://doi.org/10.1016/j.palaeo.2011.05.013 |
|
27. Skouroliakou M, Matthaiou C, Chiou A, et al. Physicochemical stability of parenteral nutrition supplied as all-in-one for neonates. Journal of Parenteral and Enteral Nutrition. 2008;32(2):201—209.
https://doi.org/10.1177/0148607108314768
PMid:18407915 |
|
28. Takaya J, Yamato F, Kaneko K. Possible relationship between low birth weight and magnesium status: from the standpoint of “fetal origin” hypothesis. Magnes Res. 2006;19:63—69.
PMid:16846102 |
|
29. Thompson J, Meline M. Nutrition for life. Pearson: Benjamin-Cummings Publishing Company; 2008. 211 p. |