1.  Blanco J.M., Echevarria F., Garcia C.M. Dealing with size-spectra: Some conceptual and mathematical problems. Sci. Mar., 1994, vol. 58, nos. 1–2, pp. 17–29.
  2.  Blanco J.M., Quiñones R. A., Guerrero F., Rodríguez J. The use of biomass spectra and allometric relations to estimate respiration of planktonic communities. J. Plankton Res., 1998, vol. 20, no. 5, pp. 887–900. doi: 10.1093/plankt/20.5.887.
  3.  Ikeda T. Metabolic rates of epipelagic marine zooplankton as a function of body mass and temperature. Mar. Biol., 1985, vol. 85, no. 1, pp. 1–11. doi: 10.1007/BF00396409.
  4.  Peterson I., Wroblewski S. Mortality rate of fishes in the pelagic ecosystem. Can. J. Fish. Aquat. Sci., 1984, vol. 41, no. 7, pp. 1117–1120. doi: 10.1139/f84-131.
  5.  Baikov A.D. How to estimate the daily food consumption of fish under natural conditions. Trans. Am. Fish. Soc., 1935, vol. 65, pp. 288–289.
  6.  Eggers D.M. Factors in interpreting data obtained by diel sampling of fish stomachs. J. Fish. Res. Board Can., 1977, vol. 34, no. 2, pp. 290–294. doi: 10.1139/f77-045.
  7.  Tittel J., Zippel B., Geller W., Juliane S. Relationships between plankton community structure and plankton size distribution in lakes of northern Germany. Limnol. Oceanogr., 1998, vol. 43, no. 6, pp. 1119–1132. doi: 10.4319/lo.1998.43.6.1119.
  8.  Hu V.J.H. Relationships between vertical migration and diet in four species of euphausiids. Limnol. Oceanogr., 1978, vol. 23, no. 2, pp. 296–306. doi: 10.4319/lo.1978.23.2.0296.
  9.  Roe H.S.J., Badcock J. The diel migrations and distributions within a mesopelagic community in the North East Atlantic. 6. Vertical migrations and feeding of fish. Prog. Oceanogr., 1984, vol. 13, nos. 3–4, pp. 389–424. doi: 10.1016/0079-6611(84)90014-4.
  10.  Roe H.S.J. The diel migrations and distributions within a mesopelagic community in the North East Atlantic. 2. Vertical migrations and feeding of mysids and decapod crustacea. Prog. Oceanogr., 1984, vol. 13, nos. 3–4, pp. 269–318. doi: 10.1016/0079-6611(84)90011-9.
  11.  Tseitlin V.B. Energetics of the Deep-Sea Pelagic Communities. Moscow, Nauka, 1986. 112 p. (In Russian)
  12.  Pinot J.M., Jansá J. Time variability of acoustic backscatter from zooplankton in the Ibiza Channel (western Mediterranean). Deep Sea Res., Part I, 2001, vol. 48, no. 7, pp. 1651–1670. doi: 10.1016/S0967-0637(00)00095-9.
  13.  Benoit-Bird K.J., Au W.W.L., Wisdom D.W. Nocturnal light and lunar cycle effects on diel migration of micronekton. Limnol. Oceanogr., 2009, vol. 54, no. 5, pp. 1789–1800. doi: 10.4319/lo.2009.54.5.1789.
  14.  Schlitzer R. Carbon export fluxes in the Southern Ocean: Results from inverse modeling and comparison with satellite-based estimates. Deep Sea Res., Part II, 2002, vol. 49, nos. 9–10, pp. 1623–1644. doi: 10.1016/S0967-0645(02)00004-8.
  15.  Roemmich D., McGowan J. Climate warming and the decline of zooplankton in the California Current, Science, 1995, vol. 267, no. 5202, pp. 1324–1326. doi: 10.1126/science.267.5202.1324.
  16.  Sarmiento J.L., Hughes T.M.C., Stouffer R.J., Manabe S. Simulated response of the ocean carbon cycle to anthropogenic climate warming. Nature, 1998, vol. 393, pp. 245–249. doi: 10.1038/30455.
  17.  Matear R. J., Hirst A.C., McNeill B.I. Changes in dissolved oxygen in the Southern Ocean with climate change. Geochem. Geophys. Geosyst., 2000, vol. 1, no. 11, pp. 1–12.
  18.  Plattner G.-K., Joos F., Stocker T.F., Marchal O. Feedback mechanisms and sensitivities of ocean carbon uptake under global warming. Tellus B, 2001, vol. 53, no. 5, pp. 564–592. doi: 10.1034/j.1600-0889.2001.530504.x.
  19.  Bopp L., Que C. Le, Heimann M., Manning A.C., Monfray P. Climate-induced oceanic oxygen fluxes: Implications for the contemporary carbon budget. Global Biogeochem. Cycles, 2002, vol. 16, no. 2, pp. 1022–1035. doi: 10.1029/2001GB001445.
  20.  Keeling R., Garcia H. The change in oceanic O2 inventory associated with recent global warming. Proc. Natl. Acad. Sci., 2002, vol. 99, no. 12, pp. 7848–7853. doi: 10.1073/pnas.122154899.
  21.  Stramma L., Prince E.D., Schmidtko S., Luo J., Hoolihan J.P., Visbeck M., Wallace D.W., Brandt P., Körtzinger A. Expansion of oxygen minimum zones may reduce available habitat for tropical pelagic fishes. Nat. Clim. Change., 2011, vol. 2, pp. 33–37. doi: 10.1038/nclimate1304.
  22.  Goodyear C.P., Luo J., Prince E.D., Hoolihan J.P., Snodgrass D., Orbesen E.S., Serafy J.E. Vertical habitat use of Atlantic blue marlin Makaira nigricans: Interaction with pelagic longline gear. Mar. Ecol.: Prog. Ser., 2008, vol. 365, pp. 233–245. doi: 10.3354/meps07505.
  23.  Prince E.D., Goodyear C.P. Hypoxia-based habitat compression of tropical pelagic fishes. Fish. Oceanogr., 2006, vol. 15, no. 6, pp. 451–464. doi: 10.1111/j.1365-2419.2005.00393.x.