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Neglected Food Bubbles: The Espresso Coffee Foam

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1. Illy A, Viani R, editors. Espresso coffee: the science of quality. 2. London: Elsevier Academic Press; 2005.

2. Bamforth CW. Foam: method, myth or magic? The Brewer. 1995;10:396–399.

3. Dalla Rosa M, Nicoli MC, Lerici CR. “Qualitative characteristics of espresso coffee with reference to percolation process” (in Italian) Ind. Aliment. 1986;9:629–633.

4. M. Petracco, “Physico-chemical and structural characterisation of espresso coffee brew” In: Proceedings of the 13th International Scientific Colloquium on Coffee, ASIC (Paipa). (ASIC, Paris, 1989) pp. 246–61

5. Dickinson E. An introduction to food colloids. Oxford: Oxford University Press; 1992.

6. L. Navarini, M. Barnabà, F. Suggi Liverani, “Physicochemical characterization of the espresso coffee foam” In: Proceedings of the 21th International Scientific Colloquium on Coffee, ASIC (Montpellier). (ASIC, Paris, 2006) CD ROM

7. Bazzara F, Bazzara M. The espresso coffee production system. Gorizia: Edizioni 2000; 2004.

8. F. Suggi Liverani, L. Mastropasqua, F. Van Eeden, B. Dellapietra, “Method for extracting espresso coffee particularly from a cartridge with crema generating septum, and beverage obtainable from the method”. (International Patent Application WO 2007/131559 A1, 2007)

9. Petracco M. Beverage preparation: brewing trends for the new millennium. In: Clarke RJ, Vitzthum OG, editors. Coffee Recent Developments. London: Blackwell Science; 2001.

10. Cappuccio R, Cattaneo GP, Erbacci G, Jocher U. A parallel implementation of a cellular automata based model for coffee percolation. Parallel Comput. 2001;27(5):685–717. doi: 10.1016/S0167-8191(00)00084-3.[Cross Ref]
11. Illy E. The complexity of coffee. Sci. Am. 2002;6:92–98.[PubMed]

12. C.E. Barbera, “Gas-volumetric method for the determination of the internal non-odorous atmosphere of coffee beans” In: Proceedings of the 3 rd International Scientific Colloquium on Coffee, ASIC (Montpellier). (ASIC, Paris, 1967) pp. 436–442

13. Shimoni E, Labuza TP. Degassing kinetics and sorption equilibrium of carbon dioxide in fresh roasted and ground coffee. J. Food Process Eng. 2000;23:419–436. doi: 10.1111/j.1745-4530.2000.tb00524.x.[Cross Ref]

14. T.P. Labuza, C. Cardelli, B. Anderson, E. Shimoni, “Physical Chemistry of roasted and ground coffee: shelf life improvement for flexible packaging”, In: Proceedings of the 19th International Scientific Colloquium on Coffee, ASIC, (Trieste). (ASIC, Paris, 2001) CD-ROM

15. Severini C, Pilli T, Romani S, Pinnavaia GG. “Qualità characteristics of “espresso” coffee. A study performed through coffee shops” (in Italian) Ind. Aliment. 1999;38:1279–1284.

16. S. Romani, C. Severini, A.G. Fiore, G.G. Pinnavaia, “Quality of espresso coffee: a study performed through Italian coffee shops” In: Proceedings of the 20th International Scientific Colloquium on Coffee, ASIC, (Bangalore). (ASIC, Paris, 2004) CD ROM

17. Maetzu L, Andueza S, Ibanez C, Paz de Pena M, Bello J, Cid C. Multivariate methods for characterization and classification of espresso coffees from different botanical varieties and types of roast by foam, taste and mouthfeel. J. Agric. Food Chem. 2001;49:4743–4747. doi: 10.1021/jf010314l.[PubMed][Cross Ref]

18. Clarke CJ, Macrae R. Coffee volume 2: technology. New York: Elsevier Applied Science; 1987.

19. Anderson BA, Shimoni E, Liardon R, Labuza TP. “The diffusion kinetics of carbon dioxide in fresh roasted and ground coffee” J. Food Eng. 2003;59:71–78. doi: 10.1016/S0260-8774(02)00432-6.[Cross Ref]
20. Navarini L, Rivetti D. Water quality for Espresso coffee. Food Chem. 2010;122:424–428. doi: 10.1016/j.foodchem.2009.04.019.[Cross Ref]

21. D. Rivetti, L. Navarini, R. Cappuccio, A. Abatangelo, M. Petracco, F. Suggi-Liverani, “Effects of water composition and water treatment on espresso coffee percolation” In: Proceedings of the 19th International Scientific Colloquium on Coffee, ASIC, (Trieste). (ASIC, Paris, 2001) CD-ROM

22. O. Fond, “Effect of water and coffee acidity on extraction dynamics of coffee bed compaction in espresso type extraction”, In: Proceedings of the 16th International Scientific Colloquium on Coffee, ASIC (Kyoto). (ASIC, Paris, 1995) pp. 413–420

23. Nunes FM, Coimbra MA, Duarte AC, Delgadillo L. Foamability, foam stability, and chemical composition of espresso coffee as affected by the degree of roast. J. Agric. Food Chem. 1997;45:3238–3243. doi: 10.1021/jf970009t.[Cross Ref]
24. Nunes FM, Coimbra MA. Influence of polysaccharide composition in foam stability of espresso coffee. Carbohydr. Polym. 1998;37:283–285. doi: 10.1016/S0144-8617(98)00072-1.[Cross Ref]
25. Navarini L, Gilli R, Gombac V, Abatangelo A, Bosco M, Toffanin R. Polysaccharides from hot water extracts of roasted Coffea arabica beans: isolation and characterization. Carbohydr. Polym. 1999;40:71–81. doi: 10.1016/S0144-8617(99)00032-6.[Cross Ref]

26. L. Navarini, M. Petracco, “Heavily foaming coffee fraction and process for its manufacture” European Patent Application, EP 1 021 957 A1 (1999)

27. M. Petracco, L. Navarini, A. Abatangelo, V. Gombac, E. D’Agnolo, F. Zanetti, “Isolation and characterization of a foaming fraction from hot water extracts of roasted coffee”,In: Proceedings of the. 18th International Scientific Colloquium on Coffee, ASIC (Helsinki). (ASIC, Paris, 1999) pp. 95–105

28. Piazza L, Gigli J, Bulbarello A. Interfacial rheology study of espresso coffee foam structure and properties. J. Food Eng. 2008;84:420–429. doi: 10.1016/j.jfoodeng.2007.06.001.[Cross Ref]
29. Rossetti D, Yakubov GE, Stokes JR, Williamson AM, Fuller GG. Interaction of human whole saliva and astringent dietary compounds investigated by interfacial shear rheology. Food Hydrocolloids. 2008;22:1068–1078. doi: 10.1016/j.foodhyd.2007.05.014.[Cross Ref]
30. Saliba R, Ayoub MJ. “Des proteins fortement moussantes dans le café torrefie” (in French) Sciences des Aliments. 2003;23:249–263. doi: 10.3166/sda.23.249-263.[Cross Ref]
31. D’Agostina A, Boschin G, Bacchini F, Arnoldi A. Investigations on the high molecular weight foaming fractions of espresso coffee. J. Agric. Food Chem. 2004;52:7118–7125. doi: 10.1021/jf049013c.[PubMed][Cross Ref]
32. Aroulmoji V, Hutteau F, Mathlouthi M, Rutledge DN. Hydration properties and the role of water in taste modalities of sucrose, caffeine and sucrose-caffeine mixtures. J. Agric. Food Chem. 2001;49:4039–4045. doi: 10.1021/jf010405i.[PubMed][Cross Ref]

33. R. Douillard, V. Aguié-Béghin, “Surface active molecules and foam properties of some beverages”, in Proceedings of the European Workshop on Recent Advances in Melanoidins Research. (Madrid, 2002) pp. 14

34. Illy A, Viani R, editors. Espresso Coffee: The Chemistry of Quality. London: Elsevier Academic Press; 1995.

35. Andueza S, Maeztu L, Dean B, Pena MP, Bello J, Cid C. Influence of water pressure on the final quality of arabica espresso coffee. Application of multivariate analysis. J. Agric. Food Chem. 2002;50:7426–7431. doi: 10.1021/jf0206623.[PubMed][Cross Ref]
36. Andueza S, Maeztu L, Pascual L, Ibanez C, Pena MP, Cid C. Influence of extraction temperature on the final quality of espresso coffee. J. Sci. Food Agric. 2003;83:240–248. doi: 10.1002/jsfa.1304.[Cross Ref]
37. Andueza S, Vila MA, Pena MP, Cid C. Influence of coffee/water ratio on the final quality of espresso coffee. J. Sci. Food Agric. 2007;87:586–592. doi: 10.1002/jsfa.2720.[Cross Ref]
38. Navarini L, Ferrari M, Suggi Liverani F, Liggieri L, Ravera F. Dynamic tensiometric characterization of espresso coffee beverage. Food Hydrocolloids. 2004;18:387–393. doi: 10.1016/S0268-005X(03)00126-7.[Cross Ref]
39. Kabalnov A, Weers J, Arlauskas R, Tarara T. Phospholipids as emulsion stabilizers. 1. Interfacial-tension. Langmuir. 1995;11:2966–2974. doi: 10.1021/la00008a020.[Cross Ref]
40. Ferrari M, Navarini L, Liggieri L, Ravera F, Suggi Liverani F. Interfacial properties of coffee-based beverages. Food Hydrocolloids. 2007;21:1374–1378. doi: 10.1016/j.foodhyd.2006.10.016.[Cross Ref]

41. L. Navarini, R. Cappuccio, F. Suggi Liverani, “The body of the espresso coffee: the elusive importance” In: Proceedings of the 20th International Scientific Colloquium on Coffee, ASIC, (Bangalore). (ASIC, Paris, 2004) CD ROM

42. Christersson CE, Dunford RG, Glantz P-O, Baier RE. “Effect of critical surface tension on retention of oral microorganisms” Scand. J. Dent. Res. 1989;97:247–256.[PubMed]
43. Glantz P-O. Interfacial phenomena in the oral cavity. Colloids Surf. A. 1997;123–124:657–670. doi: 10.1016/S0927-7757(96)03817-4.[Cross Ref]
44. Vissink A, Jong HP, Busscher HJ, Arends J, Gravenmade EJ. Wetting properties of human saliva and saliva substitutes. J. Dent. Res. 1986;65:1121–1124. doi: 10.1177/00220345860650090301.[PubMed][Cross Ref]
45. Daglia M, Tarsi R, Papetti A, Grisoli P, Carro C, Pruzzo C, Gazzani G. Antiadhesive effect of green and roasted coffee on Streptococcus mutans adesive properties on saliva-coated hydroxyapatite beads. J. Agric. Food Chem. 2002;50:1225–1229. doi: 10.1021/jf010958t.[PubMed][Cross Ref]

46. Foschia V. “La crema del caffè espresso: caratterizzazione chimico-fisica” (in Italian) Tesi di Laurea: Università di Udine; 2008.

47. Bamforth CW. The foaming properties of beer. J. Inst. Brew. 1985;91:370–383.

48. Bishop LR, Whitear AL, Inman WR. A scientific basis for beer foam formation and cling. J. Inst. Brew. 1974;80:68–80.

49. Kobayashi N, Segawa S, Umemoto S, Kuroda H, Kaneda H, Mitani Y, Watari J, Takashio M. A new method for evaluating foam-damaging effect by free fatty acids. J. Am. Soc. Brew. Chem. 2002;60:37–41.

50. C. Fischer, H.K. Cammenga, “When are coffee beans just right? Development of physico-chemical properties during roasting”, In: Proceedings of the 19th International Scientific Colloquium on Coffee, ASIC, (Trieste). (ASIC, Paris, 2001) CD-ROM

51. Binks BP. Particles as surfactants—similarities and differences. Curr. Opin. Colloid Interface Sci. 2002;7:21–41. doi: 10.1016/S1359-0294(02)00008-0.[Cross Ref]

52. F. Silizio, “Coffee foam”, IC Biolab, Internal Report n°003/2008 (2008).

53. S.J. Neethling, H.T. Lee, J.J. Cilliers, “The dispersion of particles within foams” in Proceedings of the XXI Int. Congress of Technical and Applied Mechanics. (Warsaw, Poland, 2004)

54. S. Andueza, L. Maeztu, M.P. de Pena, C. Cid, “Influence of extraction temperature on the final quality of colombian coffee cups” In: Proceedings of the 19th International Scientific Colloquium on Coffee, ASIC, (Trieste). (ASIC (Association Scientifique Internationale du Café), Paris, 2001) CD-ROM

55. Pugh RJ. Foams and Foaming. In: Holmberg K, editor. Handbook of Applied Surface and Colloid Chemistry. Chichester: Wiley; 2001.

56. Severini C, Romani S, Pinnavaia GG. “Investigation into the quality of espresso coffee” (in Italian) Ind. Aliment. 1997;36:12–16.

57. E. Illy, T. Bullo, “Considérations sur le procédé d’extraction (préparation de la boisson)” (in French) In: Proceedings of the 1st International Scientific Colloquium on Coffee. ASIC, Paris. Café Cacao Thé, 7, 177–181 (1963)

58. M. Petracco, F. Suggi Liverani, “Espresso coffee brewing dynamics: development of mathematical and computational models”, In: Proceedings of the 15th International Scientific Colloquium on Coffee, ASIC, (Montpellier). (ASIC, Paris, 1993) pp 702–711.

59. Prins A. Principles of Foam Stability. In: Dickinson E, Stainsby G, editors. Advances in Food Emulsions and Foams. Essex: Elsevier Applied Science; 1988. p. 91.

60. Wilde PJ, Husband FA, Cooper D, Ridout MJ, Mills ENC, Muller RE. Destabilization of beer foams by lipids: structural and Interfacial Effects. J. Am. Soc. Brew. Chem. 2004;61:196–202.

61. Dickie KH, Cann C, Norman EC, Bamforth CW, Muller RE. Foam-negative materials. J. Am. Soc. Brew. Chem. 2001;59:17–23.

62. Anderson M, Brooker BE. Dairy Foams. In: Dickinson E, Stainsby G, editors. Advances in Food Emulsions and Foams. Essex: Elsevier Applied Science; 1988. p. 221.

63. C. Rampini, N. Innocente, L. Navarini, F. Suggi Liverani, “Aspects of milk and milk foams on dairy based espresso coffee hot drinks”, In: Proceedings of the 21th International Scientific Colloquium on Coffee, ASIC, (Montpellier). (ASIC, Paris, 2006) CD ROM

64. Deeth HC, Smith RAD. Lipolysis and other factors affecting the steam frothing capacity of milk. Aust. J. Dairy Technol. 1983;38:14–19.

65. Buchanan RA. Lipolysis and the frothing of milk—steam frothing test. Aust. J. Dairy Technol. 1965;20:62–66.

66. Schokker EP, Bos MA, Kuijpers AJ, Wijnen ME, Walstra P. Spreading of oil from protein stabilized emulsions at air/water interfaces. Colloids and Interfaces B: Biointerfaces. 2002;26:315–327. doi: 10.1016/S0927-7765(02)00022-X.[Cross Ref]
67. Ratnayake WMN, Hollywood R, O’Grady E, Stavric B. Lipid content and composition of coffee brews prepared by different methods. Food Chem. Toxic. 1993;31:263–269. doi: 10.1016/0278-6915(93)90076-B.[PubMed][Cross Ref]

68. Kralchevsky PA, Danov KD, Denkov ND. Chemical physics of colloid systems and interfaces. In: Birdi KS, editor. Handbook of Surface and Colloid Chemistry. New York: CRC Press; 2002.

69. Pilhofer GM, Lee H, McCarthy MJ, Tong PS, German JB. Functionality of milk fat in foam formation and stability. J. Dairy Sci. 1994;77:55–63. doi: 10.3168/jds.S0022-0302(94)76928-9.[Cross Ref]

70. Speer K, Kolling-Speer I. Lipids. In: Clarke RJ, Vitzthum OG, editors. Coffee recent developments. London: Blackwell Science; 2001.


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