Emerging and potential technologies for facilitating shrimp peeling: A review
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F. Jessen | K. Olsen | V. Orlien | N. Bøknæs | Nina Gringer | T. Dang | P. L. Nielsen | Niels Bøknæs
[1] Zhenxing Li,et al. Effect of power ultrasound on the immunoactivity and texture changes of shrimp (Penaeus vannamei) , 2018 .
[2] F. Chemat,et al. Review of Green Food Processing techniques. Preservation, transformation, and extraction , 2017 .
[3] C. K. Kamalakanth,et al. High pressure treatment of green mussel Perna viridis Linnaeus, 1758: effect on shucking and quality changes in meat during chill storage , 2015 .
[4] J. Amigo,et al. Modelling highly co-eluted peaks of analytes with high spectral similarity , 2015 .
[5] D. Meena,et al. Growth promoting activity of Pangasianodon hypophthalmus recombinant growth hormone expressed in Escherichia coli , 2015 .
[6] H. Mishra,et al. Chilled Storage of High Pressure Processed Black Tiger Shrimp (Penaeus monodon) , 2015 .
[7] Yanbin Li,et al. Modeling the thermoultrasound inactivation of Vibrio parahaemolyticus in raw peeled shrimps. , 2013, Journal of food protection.
[8] Tanmay Basak,et al. Microwave food processing—A review , 2013 .
[9] Xiaosong Hu,et al. shucking of bay scallop (Argopecten irradians) using high hydrostatic pressure and its effect on microbiological and physical quality of adductor muscle , 2013 .
[10] A. Ibarz,et al. Enzymatic peeling and discoloration of Red Bartlett pears , 2013 .
[11] O. P. Chauhan,et al. Effect of High-Pressure Processing on Physical, Biochemical, and Microbiological Characteristics of Black Tiger Shrimp (Penaeus monodon) , 2013, Food and Bioprocess Technology.
[12] S. Benjakul,et al. Effect of high pressure and heat treatments on black tiger shrimp (Penaeus monodon Fabricius) muscle protein , 2012, International Aquatic Research.
[13] M. M. Youssef,et al. Applications of ultrasound in analysis, processing and quality control of food: A review , 2012 .
[14] M. Sukwattanasinitt,et al. Products from microwave and ultrasonic wave assisted acid hydrolysis of chitin. , 2012, Carbohydrate polymers.
[15] H. Izumi,et al. Microbiological and Physicochemical Quality of Enzymatically Peeled Persimmon Fruit for Fresh-cut Slices , 2012 .
[16] I. Egea,et al. Obtaining and storage of ready-to-use segments from traditional orange obtained by enzymatic peeling , 2012, Food science and technology international = Ciencia y tecnologia de los alimentos internacional.
[17] M. Elsabee,et al. Enhancement and Characterization of Chitosan Extraction from the Wastes of Shrimp Packaging Plants , 2011 .
[18] Rekha Chawla,et al. High hydrostatic pressure technology in dairy processing: a review , 2011, Journal of food science and technology.
[19] A. Ibarz,et al. Lemon peel degradation modeling in the enzymatic peeling process. , 2011 .
[20] Hao Feng,et al. Evaluation of Roma Tomato (Solanum lycopersicum) Peeling Methods: Conventional vs. Power Ultrasound , 2010 .
[21] A. Ibarz,et al. Albedo hydrolysis modelling and digestion with reused effluents in the enzymatic peeling process of grapefruits. , 2010, Journal of the science of food and agriculture.
[22] K. Hsu,et al. Effect of different high pressure treatments on shucking, biochemical, physical and sensory characteristics of oysters to elaborate a traditional Taiwanese oyster omelette. , 2010, Journal of the science of food and agriculture.
[23] Songming Zhu,et al. High Pressure Shelling Of Shrimp and Quality Improvement , 2010 .
[24] N. Mumbai,et al. SONOPHORESIS: AN OVERVIEW , 2010 .
[25] Shin-Ichiro Nishimura,et al. A new glycosylation method part 3: study of microwave effects at low temperatures to control reaction pathways and reduce byproducts , 2008 .
[26] Doaa F George,et al. Non‐Thermal effects in the microwave induced unfolding of proteins observed by chaperone binding , 2008, Bioelectromagnetics.
[27] K. Vårum,et al. A seasonal study of the chemical composition and chitin quality of shrimp shells obtained from northern shrimp (Pandalus borealis) , 2008 .
[28] G. Barbosa‐Cánovas,et al. High-Pressure Treatment in Food Preservation , 2007 .
[29] Aaron L. Brody,et al. Non‐thermal food processing/preservation technologies: a review with packaging implications , 2007 .
[30] U. Skúladóttir,et al. The Biology of Northern Shrimp (Pandalus borealis) on the Flemish Cap , 2007 .
[31] W. Visessanguan,et al. Comparative studies on chemical composition and thermal properties of black tiger shrimp (Penaeus monodon) and white shrimp (Penaeus vannamei) meats , 2007 .
[32] A. Ibarz,et al. Enzyme Recovery and Effluents Generated in the Enzymatic Peeling Process of Lemons , 2006 .
[33] K. Srogi. A Review: Application of Microwave Techniques for Environmental Analytical Chemistry , 2006 .
[34] J. Weiss,et al. Sonication-assisted extraction of chitin from shells of fresh water prawns (Macrobrachium rosenbergii). , 2006, Journal of agricultural and food chemistry.
[35] K. Jamil,et al. Reduction of allergenic properties of shrimp (Penaeus Vannamei) allergens by high intensity ultrasound , 2006 .
[36] Anil R. Shah,et al. Effects of low-frequency ultrasound on epidermal and dermal structures: A clinical and histologic study , 2006 .
[37] A. Ibarz,et al. Orange peel degradation and enzyme recovery in the enzymatic peeling process , 2006 .
[38] V. Venugopal. High Pressure Processing , 2005 .
[39] Angel Díaz-Ortiz,et al. Microwaves in organic synthesis. Thermal and non-thermal microwave effects. , 2005, Chemical Society reviews.
[40] H. Ghazali,et al. EFFECTS OF ENZYME‐AIDED PEELING ON THE QUALITY OF LOCAL MANDARIN (CITRUS RETICULATA B.) SEGMENTS , 2005 .
[41] E. Huff-Lonergan,et al. Early postmortem biochemical factors influence tenderness and water-holding capacity of three porcine muscles. , 2004, Journal of animal science.
[42] A. Malick,et al. A Simple Microwave Technique for the Separation of Epidermis and Dermis in Skin Uptake Studies , 1989, Pharmaceutical Research.
[43] R. Ahvenainen,et al. The potential of enzymatic peeling of vegetables , 2003 .
[44] F. Shahidi,et al. Components and nutritional quality of shrimp processing by-products , 2003 .
[45] D. Archer,et al. Microwave radiation can alter protein conformation without bulk heating , 2003, FEBS letters.
[46] İlkem Toker,et al. Enzymatic peeling of apricots, nectarines and peaches , 2003 .
[47] Michael T. Morrissey,et al. Use of High-pressure Processing for Oyster Shucking and Shelf-life Extension , 2002 .
[48] M. A. Sánchez,et al. Microwave irradiation for rapid epidermis-dermis separation and improved epidermal cell immunodetection , 2002, Biotechnic & histochemistry : official publication of the Biological Stain Commission.
[49] S. P. Campana-Filho,et al. On the sonication of chitin: effects on its structure and morphology and influence on its deacetylation , 2001 .
[50] C A Royer,et al. Pressure provides new insights into protein folding, dynamics and structure. , 2001, Trends in biochemical sciences.
[51] H. Bohr,et al. Microwave-enhanced folding and denaturation of globular proteins. , 2000, Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics.
[52] E. Kimmel,et al. Ultrasound-induced intercellular space widening in fish epidermis. , 2000, Ultrasound in medicine & biology.
[53] E. H. Marth,et al. Incidence and behavior of Listeria monocytogenes in fish and seafood. , 1999 .
[54] D. Ledward,et al. Effects of high pressure on the myofibrillar proteins of cod and turkey muscle. , 1999, Journal of agricultural and food chemistry.
[55] P. Fernández,et al. Modelling design of cuts for enzymatic peeling of mandarin and optimization of different parameters of the process , 1998 .
[56] Y. Hung,et al. CONSUMER ACCEPTANCE AND QUALITY OF MICROWAVE‐COOKED SHRIMP , 1998 .
[57] Thomas Ohlsson,et al. Microwave Heating Uniformity of Ready Meals as Affected by Placement, Composition, and Geometry , 1996 .
[58] S. Watabe,et al. Changes in Body Color Appearance of the Black Tiger Prawn Penaeus monodon by the Varied Composition of Carotenoids Soluble as Carotenoprotein and Remaining Insoluble after Collagenase Treatment for the Muscular Epithelium , 1995 .
[59] Robert E. Brackett,et al. Evaluation of Microbiological Safety of Shrimp Cooked in a Microwave Oven. , 1995, Journal of food protection.
[60] K. Yamamoto,et al. Morphological and physicochemical changes in the myosin molecules induced by hydrostatic pressure. , 1994, Journal of biochemistry.
[61] C. Mannheim,et al. Optimization of enzymatic peeling of oranges and pomelo , 1994 .
[62] C. Mannheim,et al. Optimization of Enzymatic Peeling of Grapefruit , 1994 .
[63] J. Cheftel,et al. Bacterial Growth During Chilled Storage of Pressure-Treated Minced Meat , 1994 .
[64] Patrick Masson,et al. Effects of high pressure on proteins , 1993 .
[65] Lucina E. Lampila Bs,et al. Functions and Uses of Phosphates in the Seafood Industry , 1993 .
[66] K. Yam,et al. EFFECT of METAL SHIELDING ON MICROWAVE HEATING UNIFORMITY of A CYLINDRICAL FOOD MODEL , 1992 .
[67] W. Dall,et al. The Biology of the Penaeidae , 1991 .
[68] E. S. Chang. Hormonal Control of Molting in Decapod Crustacea , 1985 .
[69] D. Schick,et al. Synopsis of biological data on the pink shrimp,Pandalus borealis Kroyer, 1838 , 1985 .
[70] Thomas Ohlsson,et al. Problems in microwave reheating of chilled foods. , 1984 .
[71] D. Fung,et al. Effect of Microwaves on Microorganisms in Foods 1, 2. , 1980, Journal of food protection.
[72] I. Stevenson. The removal of egg shell membranes by enzyme treatment to facilitate the study of shell microstructure. , 1980, Poultry science.
[73] David L. Crawford,et al. Meat yield and shell removal functions of shrimp processing , 1980 .
[74] A. Novak,et al. Thermal and microwave energy for shrimp processing , 1975 .
[75] W. Clark,et al. Ultrastructural observations of the muscle insertion and modified branchiostegite epidermis in the larval brown shrimp, Penaeus aztecus. , 1972, Tissue & cell.
[76] R. L. Wigley,et al. Biology of the Northern Shrimp, Pandalus borealis, in the Gulf of Maine , 1969 .
[77] R. J. McCarthy,et al. Nuclear matter calculations using separable potentials , 1967 .