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Research Trends in Dairy Product's Flavors Characteristics  

Sung, Jeehye (Department of Food Science and Biotechnology, Andong National University)
Park, Sunhyun (Food Standard Research Center, Korea Food Research Institute)
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축산식품과학과 산업 / v.11, no.1, 2022 , pp. 57-63 More about this Journal
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1 FIS식품산업통계정보 2018 세분시장 보고서-버터, 치즈, 발효유 시장.
2 Piccand V, Cutullic E, Meier S, Schori F, Kunz PL, Roche JR, Thomet P. 2013. Production and reproduction of Fleckvieh, Brown Swiss, and 2 strains of Holstein-Friesian cows in a pasture based, seasonal-calving dairy system. J Dairy Sci 96: 5352-5363.   DOI
3 Noh BS. Analysis of volatile compounds using electronic nose and its application in food industry. Korean J Food Sci Technol37(6):1048-1064.
4 Friedrich JE, Acree TE. 1998. Gas chromatography olfactometry (GC/O)of dairyproducts. Int Dairy J 8:235-241.   DOI
5 Drake MA. 2007. Invitedreview:Sensory analysis of dairy foods. J Dairy Sci 90:4925-4937.   DOI
6 Liggett R, Drake MA, Delwiche JF. 2008. Impact of sensory characteristics on consumer liking of Swiss cheese. J Dairy Sci 91(2):466-476.   DOI
7 Cheng H. 2010. Volatile flavor compoudns in yogurt: Ariview. Crit Rev Food Sci Nutr 50(10):938-950.   DOI
8 Molimard P, Spinnler HE. 1996. Compound involved in the flavor of surface mold-ripened cheeses: Origins and properties. J Dairy Sci 79: 169-184.   DOI
9 Ai N-S, Liu H-L, Wang J, Zhang X-M, Zhang H-J, Chen H-T, Huang M-Q, Liu Y-G, Zheng F-P, Sun G-G. 2015. Triple-channel comparative analysis of volatile flavour composition in raw whole and skim milk via electronic nose, GC-MsandGC-O. AnalMethods7:4278-4284.
10 Drake MA, McIngvale S, Gerard PD, Cadwallader KR, Civille GV. 2001. Development of a descriptive language for Cheddar cheese. J Food Sci 66: 1422-1427.   DOI
11 Utz F, Kreissl J, Stark TD, Schmid C, Tanger C, Kulozik U, Hofmann T, Dawid C. 2021. Sensomics-assisted flavor decoding of dairy model systems and flavor reconstitution experiments. J Agric Food Chem 69(23):6588-6600   DOI
12 Hong SJ, Boo CG, Heo SU, Shin, EC. 2021. Comparative study between parts of fennel ( Foeniculumn vulgare Mill.) for taste and flavor properties. J Korean Soc Food Sci Nutr 50(4):384-394.   DOI
13 Sibejin JA, Wouters JA. 2009. Production of dairy aromas and flavors:New directions. In Dairy-Drived Ingredients (1st ed, 470-481) Elsevier Applied Science, London.
14 Hong EJ, Kim KH, Park IS, Park SY, Kim SG, Yang HD, Noh BS. 2012. Analysis of flavor pattern from different categoriesofcheeseusingelectricnose.KoreanJFoodSci An32(5):669-677.
15 Chung SJ, Lim CR, Noh BS. 2008. Understanding the sensory characteristics of various types of milk using descriptive analysis and electronic nose. Korean J Food Sci Technol 40(1):47-55.
16 Li M, Yang R, Zhang H, Wang S, Chen D, Lin S. 2019. Development of a flavor fingerprint by HS-GC-IMS with PCA for volatile compounds of Tricholoma matsutake Singer. Food Chem 290: 32-39.   DOI
17 농식품수출정보. https://www.kati.net/product/basisInfo.do?lcdCode=MD175
18 Ott A, Fay LB, Chaintreau A. 1997. Determination and origin of the aroma impact compounds of yogurt flavor. J Agric Food Chem 45: 850-858.   DOI
19 Mallia S, Escher F, Schlichtherile-cerny. 2008. Aroma-active compounds of butter: a review. Eur food Res Technol 226: 315-325.   DOI
20 Lim C-L, Noh BS. 2007. Application of electronic nose in biotechnology. Korean J Biotechnol Bioeng 22(6): 401-408.