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Articles

Preservation of Tilapia (Oreochromis aureus) Fillet by Isochoric (Constant Volume) Freezing

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References

  • Angsupanich K, Ledward D. 1998. High pressure treatment effects on cod Gadus morhua muscle. Food Chem. 631:39–50.
  • AOAC 937.09-1937. Salt chlorine as sodium chloride in seafood.
  • Arannilewa ST, Salawu SO, Sorungbe AA, Ola-Salawu BB. 2005. Effect of frozen period on the chemical, microbiological and sensory quality of frozen tilapia fish Sarotherodun galiaenus. Afr J Biotechnol. 48:852–55.
  • Ashie INA, Smith JP, Simpson BK. 1996. Spoilage and shelf-life extension of fresh fish and shellfish. Crit Rev Food Sci Nutr. 36:87–121.
  • Bahuaud D, Mørkøre T, Langsrud Ø, Sinnes K, Veiseth E, Ofstad R, Thomassen MS. 2008. Effects of −1.5°C Super-chilling on quality of Atlantic salmon Salmo salar pre-rigor Fillets: cathepsin activity, muscle histology, texture and liquid leakage. Food Chem. 111:329–39.
  • Bao HND, Arason S, Ϸórarinsdóttir KA. 2007. Effects of dry ice and superchilling on quality and shelf life of Arctic charr Salvelinus alpinus fillets. Int J Food Eng. 3:1–27.
  • Bene C, Arthur R, Norbury H, Allison EH, Beveridge M, Bush S, Campling L, Leschen W, Little D, Squires D, et al. 2016. Contribution of fisheries and aquaculture to food security and poverty reduction: assessing the current evidence. World Dev. 79:177–96.
  • Bilbao-Sainz C, Sinrod AJG, Powell-Palm MJ, Dao L, Takeoka G, Williams T, Wood D, Ukpai G, Aruda J, Bridges DF, et al. 2018. Preservation of sweet cherry by isochoric constant volume freezing. Innovative Food Sci Emerg Technol. 52:108–15.
  • Bourne MC. 1978. Texture profile analysis. Food Technol. 32:62–66, 72.
  • Bremner A, Hallett IC. 2006. Muscle fiber–connective tissue junctions in the fish blue grenadier macruronus novaezelandiae. A scanning electron microscope study. J Food Sci. 504:975–80.
  • Chang KLB, Chang J, Shiau CY, Pan BS. 1998. Biochemical, microbiological, and sensory changes of sea bass Lateolabrax japonicus under partial freezing and refrigerated storage. J Agric Food Chem. 46:682–86.
  • Cheah PB, Ledward DA. 1997. Catalytic mechanism of lipid oxidation following high pressure treatment in pork fat and meat. J Food Sci. 62:1135–41.
  • Chevalier D, Sequeira-Munoz A, Le Bail A, Simpson BK, Ghoul M. 2001. Effect of freezing conditions and storage on ice crystal and drip volume in turbot Scophthalmus maximus: evaluation of pressure shift freezing vs. air-blast freezing. Innovative Food Sci Emerg Technol. 13:193–201.
  • Duun AS, Rustad T. 2008. Quality of superchilled vacuum packed Atlantic salmon (Salmo salar) fillets stored at −1.4 and −3.6°C. Food Chem. 106:122–31.
  • Erkan N, Ozden O. 2008. Quality assessment of whole and gutted sardines Sardina pilchardus stored in ice. Int J Food Sci Technol. 43:1549–59.
  • FDA. U.S. Food and Drug Administration. 2018. Refrigerator and freezer storage chart.
  • Food and Agriculture Organization of the United Nations. 2018. The state of world fisheries and aquaculture.
  • Food and Agriculture Organization of the United Nations and World Health Organization. 2012. Code of practice for fish and fishery products. 2nd ed. Rome (Italy): FAO and WHO.
  • Gomez-Estaca J, Lopez-Caballero ME, Gomez-Guillen A, Lopez de Lacey A, Montero P. 2009. High pressure technology as a tool to obtain high quality carpaccio-like products from fish. Innov Food Sci Emerg Technol. 10:148–54.
  • Gudbjornsdottir B, Jonsson A, Hafsteinsson H, Heinz V. 2010. Effect of high pressure processing on Listeria spp. and on the textural and microstructural properties of cold smoked salmon. LWT - Food Sci Technol. 432:366–74.
  • Hultmann L, Rustad T. 2002. Textural changes during iced storage of Salmon Salmon salar and Cod Gadus morhua. J Aquat Food Prod Technol. 113–4:105–23.
  • Hultmann L, Rustad T. 2004. Iced storage of Atlantic salmon Salmo salar-effects on endogenous enzymes and their impact on muscle proteins and texture. Food Chem. 87:31–41.
  • Huss H. 1998. Fresh fish-quality and quality changes. In: Huss H and Technological Laboratory Ministry of Agriculture and Fisheries, editors. FAO Collection: Fisheries No. 29.
  • Hyldig G, Jørgensen BM, Undeland I, Olsen RE, Jónsson Á, Nielsen HH. 2012. Sensory properties of frozen herring Clupea harengus from different catch seasons and locations. J Food Sci. 77:S288–S293.
  • Indergård E, Tolstorebrov I, Larsen H, Eikevik TM. 2014. The influence of long-term storage, temperature and type of packaging materials on the quality characteristics of frozen farmed Atlantic salmon Salmo salar. Int J Refrig. 410:27–36.
  • Kaale LD, Eikevik TM, Rustad T, Nordtvedt TS. 2014. Changes in water holding capacity and drip loss of Atlantic salmon Salmo salar muscle during superchilled storage. LWT - Food Sci Technol. 55:528–35.
  • Kaale LD, Eikevik TM, Rustad T, Nordtvedt TS, Bardal T, Kjørsvik E. 2013. Ice crystal development in pre-rigor Atlantic salmon fillets during superchilling process and following storage. Food Control. 312:491–98.
  • Love RM. 1988. The food fishes, their intrinsic variation and practical implications. London (UK): Farrand Press. p. 121–79.
  • Mackie IM. 1993. The effect of freezing on flesh proteins. Food Rev Int. 9:575–610.
  • Montero P, Borderias J. 1990. Effect of rigor mortis and ageing on collagen in trout Salmo irideus muscle. J Sci Food Agric. 52:141–46.
  • Nordtvedt TS, Børresen T, Magnussen OM. 1998. Partial freezing of salmon fillets. In: Proceedings from IIF-IRR-Commission D1, D2/D3. Refrigerated transport, storage and retail display; Cambridge, United Kingdom. p. 106–13.
  • Nowlan S, Dyer WJ, Keith RA. 1974. Temperature and deteriorative Changes in post rigor cod muscle stored up to 14 days in the superchill range, −1 to −4°C. J Fish Res Board Can. 329:1595–605.
  • Nӑstase G, Chenang L, Ukpai G, Şerban A, Rubinsky B. 2017. Isochoric and isobaric freezing of fish muscle. Biochem Biophys Res Commun. 485:279–83.
  • Obemeata O, Nnenna FP, Christopher N. 2011. Mobiological assessment of stored tilapia guineesis. Afr J Food Sci. 54:242–47.
  • Ottestad S, Enersen G, Wold JP. 2011. Effect of freezing temperature on the color of frozen salmon. J Food Sci. 767:S423–S427.
  • Powell-Palm MJ, Preciado J, Lyu C, Rubinsky B. 2018. Escherichia coli viability in an isochoric system at subfreezing temperatures. Cryobiol. 85:17–24.
  • Powell-Palm MJ, Rubinsky B. 2019. A shift from the isobaric to the isochoric thermodynamic state can reduce energy consumption and augment temperature stability in frozen food storage. J Food Eng. 251:1–10.
  • Sequeire-Muñoz A, Chevalier D, Simpson B, Le Bail A, Ramaswamy H. 2005. Effect of pressure-shift freezing versus air-blast freezing of carp Cyprinus carpio fillets: a storage study. J Food Biochem. 29(5):504–16.
  • Shenouda SYK. 1980. Theories of protein denaturation during frozen storage of fish flesh. Adv Food Nutr Res. 26C:275–311.
  • Sikorski ZE, Kolakowski E. 2000. Endogenous enzyme activity and seafood quality: influence of chilling, freezing, and other environmental factors. In: Haard NF, Simpson BK, editors. Seafood enzymes: utilization and influence on postharvest seafood quality. Boca Raton: Marcel Dekker, Inc. p. 451–87.
  • Sivertsvik M, Rosnes JT, Kleiberg GH. 2003. Effect of modified atmosphere packaging and superchilled storage on the microbial and sensory quality of Atlantic salmon Salmo salar fillets. J Food Sci. 684:1467–72.
  • Sørensen G, Jørgensen SS. 1996. A critical examination of some experimental variables in the - thiobarbituric acid TBA test of lipid oxidation in meat products. Zeitschrift für Lebensmittel- Untersuchung und –Forschung. 202:205–10.
  • Tanaka M, Xueyi Z, Nagashima Y, Taguchi T. 1991. Effect of high pressure on the lipid oxidation in sardine meat. Nippon Suisan Gakk. 575:957–63.
  • Tironi V, de Lamballerie M, Le-Bail A. 2010. Quality changes during the frozen storage of sea bass Dicentrarchus labrax muscle after pressure shift freezing and pressure assisted thawing. Innov Food Sci Emerg Technol. 114:565–73.
  • Wu C-H, Yuan C-H, Ye X-Q, Hu Y-Q, Chen S-G, Liu D. 2014. A critical review on superchilling preservation technology in aquatic product. J Integr. 13(12):2788–806.
  • Zhu S, Ramaswamy HS, Simpson BK. 2004. Effect of high pressure versus conventional thawing on color, drip loss and texture of Atlantic salmon frozen by different methods. LWT Food Sci Technol. 373:291–99.

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