1. Assmann, G., de Backer, G., Bagnara, S., Betteridge, J., Crepaldi, G., Fernandez-Cruz, A., Godtfredsen, J., Jacotot, B., Paoletti, R., Renaud, S., Ricci, G., Rocha, E., Trautwein, E., Urbinati, G. C., Varela, G. and Williams, C. 1997. International Consensus Statement on Olive Oil and the Mediterranean Diet: Implications for Health in Europe. The Olive Oil and the Mediterranean Diet Panel. Eur. J. Can. Prev., 6: 418-421.
2. AOCS. 1993. Official Methods and Recommended Practices of the American Oil Chemists’ Society. AOCS Press, Champaign.
3. Baldioli, M., Servili, M., Perretti, G. and Montedoro, G. F. 1996. Antioxidant Activity of Tocopherols and Phenolic Compounds of Virgin Olive Oil. J. Am. Oil Chem. Soc., 73: 1589-1593.
4. Bendini, A., Cerretani, L., Carrasco-Pancorbo, A., Gomez-Caravaca, A. M., Segura-Carretero, A., Fernandez-Gutierrez, A. and Lercker, G. 2007. Phenolic Molecules in Virgin Olive Oils: A Survey of Their Sensory Properties, Health Effects, Antioxidant Activity and Analytical Methods. An Overview of the Last Decade. Molecules, 12: 1679-1719.
5. Capannesi, C., Palchetti, I., Mascini, M. and Parenti, A. 2000. Electrochemical Sensor and Biosensor for Polyphenols Detection in Olive Oils. Food Chem., 71: 553-562.
6. Cecchi, H. M. 2003. Fundamentos Teoricos e Praticos em Analise de Alimentos. Editora da Unicamp, Campinas.
7. Charbonnier, A. 1982. Main Conclusion Drawn from the International Symposium on the Recent Medical Researches on the Value of the Olive Oil to Health, Paris, PP. 1-4.
8. Chimi, H., Cillard, J., Cillard, P. and Rahamani, M. 1991. Peroxyl and Hydroxyl Radical Scavenging Activity of Some Natural Phenolic Antioxidants. J. Am. Oil Chem. Soc., 68: 307-312.
9. Covas, M. I. 2007. Olive Oil and the Cardiovascular System. Pharmacol. Res., 55: 175-186.
10. Farhoosh, R., Niazmand, R., Rezaei, M. and Sarabi, M. 2008. Kinetic Parameter Determination of Vegetable Oil Oxidation under Rancimat Test Conditions. Eur. J. Lipid Sci. Technol., 110: 587-592.
11. Farhoosh, R. and Pazhouhanmehr, S. 2009. Relative Contribution of Compositional Parameters to the Primary and Secondary Oxidation of Canola Oil. Food Chem., 114: 1002-1006.
12. Firestone, D., Fedeli, E. and Emmons, E. W. 1996. Olive Oil. In: "Bailey's Industrial Oil and Fat Products", (Ed.): Hui, Y. H.. John Wiley and Sons, New York, PP. 241-247.
13. Frankel, E. N. 1998. Lipid Oxidation. The Oily Press, Dundee.
14. Gutfinger, T. 1981. Polyphenols in Olive Oils. J. Am. Oil Chem. Soc., 58: 966-968.
15. Gutierrez, F., Arnaud, T. and Garrido, A. 2001. Contribution of Polyphenols to the Oxidative Stability of Virgin Olive Oil. J. Sci. Food Agric., 81: 1463-1470.
16. Koskas, J. P., Cillard, J. and Cillard, P. 1984. Autoxidation of Linoleic Acid and Behavior of its Hydroperoxides with and without Tocopherols. J. Am. Oil Chem. Soc., 61: 1466-1469.
17. Kulas, E. and Ackman, R. G. 2001. Properties of α-, γ- and δ-tocopherols in Purified Fish Oil Triacylglycerols. J. Am. Oil Chem. Soc., 78: 361-367.
18. Kulas, E., Olsen, E. and Ackman, R. G. 2002. Effect of α-, γ- and δ-tocopherol on the Distribution of Volatile Secondary Oxidation Products in Fish Oil. Eur. J. Lipid Sci. Technol., 104: 520-529.
19. Lampi, A. M., Kataja, L., Kamal-Eldrin, A. and Piironen, V. 1999. Antioxidant Activities of α- and γ-tocopherols in the Oxidation of Rapeseed Oil Triacylglycerols. J. Am. Oil Chem. Soc., 76: 749-755.
20. Lovaas, E. A. 1992. Sensitive Spectrophotometric Method for Lipid Hydroperoxide Determination. J. Am. Oil Chem. Soc., 69: 777-783.
21. Lumley, I. D. 1988. Polar Compounds in Heated Oils. In: "Frying of Food: Principles, Changes, New Approaches", (Eds.): Varela, G., Bender, A. E. and Morton, I. D.. Ellis Horwood Ltd., Chichester, PP. 166-173.
22. Makinen, M., Kamal-Eldrin, A., Lampi, A. M. and Hopia, A. 2001. α-, γ- and δ-tocopherols as Inhibitors of Isomerization and Decomposition of Cis, Trans Methyl Linoleate Hydroperoxides. Eur. J. Lipid Sci. Technol., 103: 286-291.
23. Owen, R. W., Mier, W., Giacosa, A., Hull, W. E., Spiegelhalder, B. and Bartsch, H. 2000. Phenolic Compounds and Squalene in Olive Oils: The Concentration and Antioxidant Potential of Total Phenols, Simple Phenols, Secoiridoids, Lignans and Squalene. Food Chem. Toxicol., 38: 647-659.
24. Paul, S. and Mittal, G. S. 1997. Regulating the Use of Degraded Oil/Fat in Deep-fat/Oil Food Frying. Crit. Rev. Food Sci. Nutr., 37: 635-662.
25. Pellegrini, N., Visioli, F., Buratti, S. and Brighenti, F. 2001. Direct Analysis of Total Antioxidant Activity of Olive Oil and Studies on the Influence of Heating. J. Agric. Food Chem., 49: 2532-2538.
26. Ruiz-Mendez, M. V., Marquez-Ruiz, G. and Dobarganes, M. C. 1997. Relationships between Quality of Crude and Refined Edible Oils Based on Quantitation of Minor Glyceridic Compounds. Food Chem., 60: 549-554.
27. Schieberle, P. and Grosch, W. 1981. Decomposition of Linoleic Acid Hydroperoxides II. Breakdown of Methyl 13-hydrperoxy-cis-9-trans-11-octadecadienoate by Radicals and Copper II ions. Zeit. Leben. u.-Forsch. A., 173: 192-198.
28. Schulte, E. 2004. Economical Micromethod for Determination of Polar Components in Frying Fats. Eur. J. Lipid Sci. Technol., 106: 772-776.
29. Shantha, N. C. and Decker, E. A. 1994. Rapid, Sensitive, Iron-based Spectrophotometric Methods for Determination of Peroxide Values of Food Lipids. J. AOAC Int., 77: 421-424.
30. Tuck, K. L. and Hayball, P. J. 2002. Major Phenolic Compounds in Olive Oil: Metabolism and Health Effects. J. Nutr. Biochem., 13: 636-644.
31. Wong, M. L., Timms, R. E. and Goh, E. M. 1988. Colorimetric Determination of Total Tocopherols in Palm Oil, Olein and Stearin. J. Am. Oil Chem. Soc., 65: 258-261.