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  1. Valembois, P., Seymour, J., Lassègues, M., 1994. Evidence of lipofuscin and melanin in the brown body of the earthworm Eisenia fetida Andrei. Cell and Tissue Research, 277(1): 183-188.
  2. Valembois, P., Roch, P., Lassegues, M., Davant, N., 1982. Bacteriostatic activity of a chloragogen cell secretion. Pedobiologia, 24: 191-197.
  3. van Gestel, C.A.M., 1991. Earthworms in ecotoxicology. Ph.D. thesis, University of Utrecht, 12 June 1991.
  4. van Gestel, C.A.M., 1992. The influence of soil characteristics on the toxicity of chemicals for earthworms: a review. In “Ecotoxicology of Earthworms”, by Greig-Smith, P.W., Becker, H., Edwards, P.J. and Heimbach, F. (eds.), Intercept Ltd. andover, pp. 44-54.
  5. van Gestel, C.A.M., 1992. Validation of earthworm toxicity tests by comparison with field studies: a review of benomyl, carbendazim, carbofuran and carbaryl. Ecotox. Environ. Safe., 23: 221-236.
  6. van Gestel, C.A.M., Dirven-Van Breemen, E.M., Baerselman, R., 1992. Influence of environmental conditions on the growth and reproduction of the earthworm Eisenia Andrei in an artificial soil substrate. Pedobiologia, 36: 109-120.
  7. van Gestel, C.A.M., Dirven-Van Breemen, E.M., Baerselman, R., Emans, H.J.B., Janssen, J.A.M., Postuma, R., van Vliet, P.J.M., 1992. Comparison of sublethal and lethal criteria for nine different chemicals in standardized toxicity tests using the earthworm Eisenia andrei. Ecotox. Environ. Safe., 23: 206-220.
  8. van Gestel, C.A.M., Ma, W.-C., 1993. Development of QSAR's in soil ecotoxicology: earthworm toxicity and soil sorption of chlorophenols, chlorobenzenes and chloroanilines. Water Air Soil Poll., 69: 265-276.
  9. van Gestel, C.A.M., Zaal, J., Dirven-van Breemen, E.M., Baerselman, R., 1995. Comparison of two test methods for determining the effects of pesticides on earthworm reproduction. Acta Zool. Fenn., 196: 278-283.
  10. van Gestel, C.A.M., Koolhaas, J.E., Hamers, T., van Hoppe, M., van Roovert, M., Korsman, C., Reinecke, S.A., 2009. Effects of metal pollution on earthworm communities in a contaminated floodplain area: Linking biomarker, community and functional responses. Environmental Pollution, 157: 895-903.
  11. van Gestel, C.A.M., Kool, P.L., Diez Ortiz, M., 2010. Metal-based nanoparticles in soil: New research themes should not ignore old rules and theories. Comments on the paper by Hu et al. 2010 “Toxicological effects of TiO2 and ZnO nanoparticles in soil on earthworm Eisenia fetida”. Soil Biology and Biochemistry, 42: 586-591.
  12. van Gestel, C.A.M., Diez Ortiz, M., Borgman, E., Verweij, R.A., 2011. The bioaccumulation of Molybdenum in the earthworm Eisenia andrei: Influence of soil properties and ageing. Chemosphere, 82: 1614-1619.
  13. Vejdovsky, F., 1884. System und morphologie der Oligochaeten. Franz Rivnac, Prague, 172 pp.
  14. Venter, J.M., Reinecke, A.J., 1988. The life cycle of the compost worm Eisenia fetida (Oligochaeta). S. Afr. J. Zool., 3: 161-165.
  15. Ventiņš, J., 2011. Changes of earthworm (Oligochaeta, Lumbricidae) communities by interaction of natural and anthropogenic factors. Thesis for Doctor’s Degree in Environmental Sciences, University of Latvia, Riga.
  16. Verma, D., Bharti, S., Yadav, S., 2010. Earthworm resources in the Gangetic plain of Uttar Pradesh, India. Int. J. Biodivers. Conserv., 2 (6): 134-139.
  17. Vetvicka, V., Sima, P., Cooper, E.L., Bilej, M., Roch, P., 1993. Immunology of Annelids. CRC Press, 320 pp.
  18. Vidugiris, G.J.A., Harrington, J.P., Friedman, J.M., Hirsch, R.E., 1993. Absence of ligand binding-induced tertiary changes in the multimeric earthworm Lumbricus terrestris hemoglobin. J. Biol. Chem., 268: 26190–26192.
  19. Vinogradov, S.N., Lugo, S.D., Mainwaring, M.G., Kapp, O.H., Crewe, A.V., 1986. Bracelet protein: a quaternary structure proposed for the giant extracellular hemoglobin of Lumbricus terrestris. Proc. Natl. Acad. Sci. USA, 83: 8034-8038.
  20. Vinogradov, S.N., Sharma, P.K., Qabar, A.N., Wall, J.S., Westrick, J.A., Simmons, J.H., Gill, S.J., 1991. A dodecamer of globin chain is the principal functional subunit of the extracellular haemoglobin of Lumbricus terrestris. J. Biol. Chem., 266: 13091-13096.
  21. Vijver, M.G., Wolterbeek, H.T., Vink, J.P.M., van Gestel, C.A.M., 2005. Surface adsorption of metals onto the earthworm Lumbricus rubellus and the isopod Porcellio scaber is negligible compared to absorption in the body. Science of the Total Environment, 340: 271-280.