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Mercier, S., Villeneuve, S., Mondor, M., & Uysal, I. (2017). Time–temperature management along the food cold chain: A review of recent developments. Comprehensive reviews in food science and food safety, 16(4), 647-667.MercierS.VilleneuveS.MondorM. & UysalI. (2017). Time–temperature management along the food cold chain: A review of recent developments. Comprehensive reviews in food science and food safety, 16(4), 647-667.Search in Google Scholar
Ndraha, N., Hsiao, H. I., Vlajic, J., Yang, M. F., & Lin, H. T. V. (2018). Time-temperature abuse in the food cold chain: Review of issues, challenges, and recommendations. Food Control, 89, 12-21.NdrahaN.HsiaoH. I.VlajicJ.YangM. F. & LinH. T. V. (2018). Time-temperature abuse in the food cold chain: Review of issues, challenges, and recommendations. Food Control, 89, 12-21.Search in Google Scholar
Møretrø, T., & Langsrud, S. (2017). Residential bacteria on surfaces in the food industry and their implications for food safety and quality. Comprehensive Reviews in Food Science and Food Safety, 16(5), 1022-1041.MøretrøT. & LangsrudS. (2017). Residential bacteria on surfaces in the food industry and their implications for food safety and quality. Comprehensive Reviews in Food Science and Food Safety, 16(5), 1022-1041.Search in Google Scholar
Alhamdan, A., Hassan, B., Alkahtani, H., Abdelkarim, D., & Younis, M. (2018). Cryogenic freezing of fresh date fruits for quality preservation during frozen storage. Journal of the Saudi Society of Agricultural Sciences, 17(1), 9-16.AlhamdanA.HassanB.AlkahtaniH.AbdelkarimD. & YounisM. (2018). Cryogenic freezing of fresh date fruits for quality preservation during frozen storage. Journal of the Saudi Society of Agricultural Sciences, 17(1), 9-16.Search in Google Scholar
Mulot, V., Benkhelifa, H., Pathier, D., Ndoye, F. T., & Flick, D. (2019). Measurement of food dehydration during freezing in mechanical and cryogenic freezing conditions. International Journal of Refrigeration, 103, 329-338.MulotV.BenkhelifaH.PathierD.NdoyeF. T. & FlickD. (2019). Measurement of food dehydration during freezing in mechanical and cryogenic freezing conditions. International Journal of Refrigeration, 103, 329-338.Search in Google Scholar
Goswami, T. K. (2017). Recent Trends of Application of Cryogenics in Food Processing and Preservation. J Food Nutr Popul Health, 1(3), 27.GoswamiT. K. (2017). Recent Trends of Application of Cryogenics in Food Processing and Preservation. J Food Nutr Popul Health, 1(3), 27.Search in Google Scholar
Chouljenko, A., Chotiko, A., Bonilla, F., Moncada, M., Reyes, V., & Sathivel, S. (2017). Effects of vacuum tumbling with chitosan nanoparticles on the quality characteristics of cryogenically frozen shrimp. Lwt, 75, 114-123.ChouljenkoA.ChotikoA.BonillaF.MoncadaM.ReyesV. & SathivelS. (2017). Effects of vacuum tumbling with chitosan nanoparticles on the quality characteristics of cryogenically frozen shrimp. Lwt, 75, 114-123.Search in Google Scholar
Xiong, Y. L. (2023). The storage and preservation of meat: I—Thermal technologies. In Lawrie’s meat science (pp. 219-244). Woodhead publishing.XiongY. L. (2023). The storage and preservation of meat: I—Thermal technologies. In Lawrie’s meat science (pp. 219-244). Woodhead publishing.Search in Google Scholar
Fidalgo, L. G., Lemos, A. T., Delgadillo, I., & Saraiva, J. A. (2018). Microbial and physicochemical evolution during hyperbaric storage at room temperature of fresh Atlantic salmon (Salmo salar). Innovative Food Science & Emerging Technologies, 45, 264-272.FidalgoL. G.LemosA. T.DelgadilloI. & SaraivaJ. A. (2018). Microbial and physicochemical evolution during hyperbaric storage at room temperature of fresh Atlantic salmon (Salmo salar). Innovative Food Science & Emerging Technologies, 45, 264-272.Search in Google Scholar
Chen, C., Liu, C., Jiang, A., Guan, Q., Sun, X., Liu, S., ... & Hu, W. (2019). The effects of cold plasma-activated water treatment on the microbial growth and antioxidant properties of fresh-cut pears. Food and Bioprocess Technology, 12, 1842-1851.ChenC.LiuC.JiangA.GuanQ.SunX.LiuS. ... & HuW. (2019). The effects of cold plasma-activated water treatment on the microbial growth and antioxidant properties of fresh-cut pears. Food and Bioprocess Technology, 12, 1842-1851.Search in Google Scholar
Rolfe, C., & Daryaei, H. (2020). Intrinsic and extrinsic factors affecting microbial growth in food systems. Food Safety Engineering, 3-24.RolfeC. & DaryaeiH. (2020). Intrinsic and extrinsic factors affecting microbial growth in food systems. Food Safety Engineering, 3-24.Search in Google Scholar
Zhong, H., Wei, S., Kang, M., Sun, Q., Xia, Q., Wang, Z., ... & Liu, S. (2023). Effects of different storage conditions on microbial community and quality changes of greater amberjack (Seriola dumerili) fillets. Lwt, 179, 114640.ZhongH.WeiS.KangM.SunQ.XiaQ.WangZ. ... & LiuS. (2023). Effects of different storage conditions on microbial community and quality changes of greater amberjack (Seriola dumerili) fillets. Lwt, 179, 114640.Search in Google Scholar
Sohail, M., Sun, D. W., & Zhu, Z. (2018). Recent developments in intelligent packaging for enhancing food quality and safety. Critical reviews in food science and nutrition, 58(15), 2650-2662.SohailM.SunD. W. & ZhuZ. (2018). Recent developments in intelligent packaging for enhancing food quality and safety. Critical reviews in food science and nutrition, 58(15), 2650-2662.Search in Google Scholar
Kaushal, J., Mehandia, S., Singh, G., Raina, A., & Arya, S. K. (2018). Catalase enzyme: Application in bioremediation and food industry. Biocatalysis and agricultural biotechnology, 16, 192-199.KaushalJ.MehandiaS.SinghG.RainaA. & AryaS. K. (2018). Catalase enzyme: Application in bioremediation and food industry. Biocatalysis and agricultural biotechnology, 16, 192-199.Search in Google Scholar
Raveendran, S., Parameswaran, B., Ummalyma, S. B., Abraham, A., Mathew, A. K., Madhavan, A., ... & Pandey, A. (2018). Applications of microbial enzymes in food industry. Food technology and biotechnology, 56(1), 16.RaveendranS.ParameswaranB.UmmalymaS. B.AbrahamA.MathewA. K.MadhavanA. ... & PandeyA. (2018). Applications of microbial enzymes in food industry. Food technology and biotechnology, 56(1), 16.Search in Google Scholar
Syamaladevi, R. M., Tang, J., Villa-Rojas, R., Sablani, S., Carter, B., & Campbell, G. (2016). Influence of water activity on thermal resistance of microorganisms in low-moisture foods: a review. Comprehensive Reviews in Food Science and Food Safety, 15(2), 353-370.SyamaladeviR. M.TangJ.Villa-RojasR.SablaniS.CarterB. & CampbellG. (2016). Influence of water activity on thermal resistance of microorganisms in low-moisture foods: a review. Comprehensive Reviews in Food Science and Food Safety, 15(2), 353-370.Search in Google Scholar
Zhu, D., Liang, J., Liu, H., Cao, X., Ge, Y., & Li, J. (2018). Sweet cherry softening accompanied with moisture migration and loss during low-temperature storage. Journal of the Science of Food and Agriculture, 98(10), 3651-3658.ZhuD.LiangJ.LiuH.CaoX.GeY. & LiJ. (2018). Sweet cherry softening accompanied with moisture migration and loss during low-temperature storage. Journal of the Science of Food and Agriculture, 98(10), 3651-3658.Search in Google Scholar
Li, J., Li, Q., Lei, X., Tian, W., Cao, J., Jiang, W., & Wang, M. (2018). Effects of wax coating on the moisture loss of cucumbers at different storage temperatures. Journal of food quality, 2018(1), 9351821.LiJ.LiQ.LeiX.TianW.CaoJ.JiangW. & WangM. (2018). Effects of wax coating on the moisture loss of cucumbers at different storage temperatures. Journal of food quality, 2018(1), 9351821.Search in Google Scholar
Carmona, L., Alquézar, B., Marques, V. V., & Peña, L. (2017). Anthocyanin biosynthesis and accumulation in blood oranges during postharvest storage at different low temperatures. Food chemistry, 237, 7-14.CarmonaL.AlquézarB.MarquesV. V. & PeñaL. (2017). Anthocyanin biosynthesis and accumulation in blood oranges during postharvest storage at different low temperatures. Food chemistry, 237, 7-14.Search in Google Scholar
Hellwig, M. (2019). The chemistry of protein oxidation in food. Angewandte Chemie International Edition, 58(47), 16742-16763.HellwigM. (2019). The chemistry of protein oxidation in food. Angewandte Chemie International Edition, 58(47), 16742-16763.Search in Google Scholar
Huang, X., & Ahn, D. U. (2019). Lipid oxidation and its implications to meat quality and human health. Food science and biotechnology, 28(5), 1275-1285.HuangX. & AhnD. U. (2019). Lipid oxidation and its implications to meat quality and human health. Food science and biotechnology, 28(5), 1275-1285.Search in Google Scholar
Leng, D., Zhang, H., Tian, C., & Xu, H. (2022). Low temperature preservation developed for special foods in East Asia: A review. Journal of Food Processing and Preservation, 46(1), e16176.LengD.ZhangH.TianC. & XuH. (2022). Low temperature preservation developed for special foods in East Asia: A review. Journal of Food Processing and Preservation, 46(1), e16176.Search in Google Scholar
Zhu, Z., Zhou, Q., & Sun, D. W. (2019). Measuring and controlling ice crystallization in frozen foods: A review of recent developments. Trends in Food Science & Technology, 90, 13-25.ZhuZ.ZhouQ. & SunD. W. (2019). Measuring and controlling ice crystallization in frozen foods: A review of recent developments. Trends in Food Science & Technology, 90, 13-25.Search in Google Scholar
Park, D., Lee, H. J., Kumar Sethukali, A., Yim, D. G., Park, S., & Jo, C. (2024). Effects of Temperature on the Microbial Growth and Quality of Unsealed Dry Pet Food during Storage. Food Science of Animal Resources.ParkD.LeeH. J.Kumar SethukaliA.YimD. G.ParkS. & JoC. (2024). Effects of Temperature on the Microbial Growth and Quality of Unsealed Dry Pet Food during Storage. Food Science of Animal Resources.Search in Google Scholar
Tribst, A. A. L., Falcade, L. T. P., & De Oliveira, M. M. (2019). Strategies for raw sheep milk storage in smallholdings: Effect of freezing or long-term refrigerated storage on microbial growth. Journal of dairy science, 102(6), 4960-4971.TribstA. A. L.FalcadeL. T. P. & De OliveiraM. M. (2019). Strategies for raw sheep milk storage in smallholdings: Effect of freezing or long-term refrigerated storage on microbial growth. Journal of dairy science, 102(6), 4960-4971.Search in Google Scholar
Maryam, A., Anwar, R., Malik, A. U., Khan, A. S., Ali, S., Waris, F., ... & El-Mogy, M. M. (2022). Pre-storage hypobaric treatment reduces microbial spoilage and maintains eating quality of strawberry fruits during low temperature conditions. Journal of Food Processing and Preservation, 46(11), e17121.MaryamA.AnwarR.MalikA. U.KhanA. S.AliS.WarisF. ... & El-MogyM. M. (2022). Pre-storage hypobaric treatment reduces microbial spoilage and maintains eating quality of strawberry fruits during low temperature conditions. Journal of Food Processing and Preservation, 46(11), e17121.Search in Google Scholar
Pan, C., Chen, S., Hao, S., & Yang, X. (2019). Effect of low-temperature preservation on quality changes in Pacific white shrimp, Litopenaeus vannamei: a review. Journal of the Science of Food and Agriculture, 99(14), 6121-6128.PanC.ChenS.HaoS. & YangX. (2019). Effect of low-temperature preservation on quality changes in Pacific white shrimp, Litopenaeus vannamei: a review. Journal of the Science of Food and Agriculture, 99(14), 6121-6128.Search in Google Scholar
Fidalgo, L. G., Castro, R., Trigo, M., Aubourg, S. P., Delgadillo, I., & Saraiva, J. A. (2019). Quality of fresh Atlantic salmon (Salmo salar) under hyperbaric storage at low temperature by evaluation of microbial and physicochemical quality indicators. Food and Bioprocess Technology, 12, 1895-1906.FidalgoL. G.CastroR.TrigoM.AubourgS. P.DelgadilloI. & SaraivaJ. A. (2019). Quality of fresh Atlantic salmon (Salmo salar) under hyperbaric storage at low temperature by evaluation of microbial and physicochemical quality indicators. Food and Bioprocess Technology, 12, 1895-1906.Search in Google Scholar
Tong, L., Tang, H., Chen, J., Sang, S., Liang, R., Zhang, Z., & Ou, C. (2022). Origin of static magnetic field induced quality improvement in sea bass (Lateolabrax japonicus) during cold storage: Microbial growth inhibition and protein structure stabilization. Frontiers in Nutrition, 9, 1066964.TongL.TangH.ChenJ.SangS.LiangR.ZhangZ. & OuC. (2022). Origin of static magnetic field induced quality improvement in sea bass (Lateolabrax japonicus) during cold storage: Microbial growth inhibition and protein structure stabilization. Frontiers in Nutrition, 9, 1066964.Search in Google Scholar
Li, Y., Lei, Y., Tan, Y., Zhang, J., Hong, H., & Luo, Y. (2022). Efficacy of freeze-chilled storage combined with tea polyphenol for controlling melanosis, quality deterioration, and spoilage bacterial growth of Pacific white shrimp (Litopenaeus vannamei). Food Chemistry, 370, 130924.LiY.LeiY.TanY.ZhangJ.HongH. & LuoY. (2022). Efficacy of freeze-chilled storage combined with tea polyphenol for controlling melanosis, quality deterioration, and spoilage bacterial growth of Pacific white shrimp (Litopenaeus vannamei). Food Chemistry, 370, 130924.Search in Google Scholar
Abdelfattah, A., Whitehead, S. R., Macarisin, D., Liu, J., Burchard, E., Freilich, S., ... & Wisniewski, M. (2020). Effect of washing, waxing and low-temperature storage on the postharvest microbiome of apple. Microorganisms, 8(6), 944.AbdelfattahA.WhiteheadS. R.MacarisinD.LiuJ.BurchardE.FreilichS. ... & WisniewskiM. (2020). Effect of washing, waxing and low-temperature storage on the postharvest microbiome of apple. Microorganisms, 8(6), 944.Search in Google Scholar
Odeyemi, O. A., Burke, C. M., Bolch, C. C., & Stanley, R. (2018). Seafood spoilage microbiota and associated volatile organic compounds at different storage temperatures and packaging conditions. International Journal of Food Microbiology, 280, 87-99.OdeyemiO. A.BurkeC. M.BolchC. C. & StanleyR. (2018). Seafood spoilage microbiota and associated volatile organic compounds at different storage temperatures and packaging conditions. International Journal of Food Microbiology, 280, 87-99.Search in Google Scholar
Oliinychenko, Y. K., Ekonomou, S. I., Tiwari, B. K., & Stratakos, A. C. (2024). Assessing the effects of cold atmospheric plasma on the natural microbiota and quality of pork during storage. Foods, 13(7), 1015.OliinychenkoY. K.EkonomouS. I.TiwariB. K. & StratakosA. C. (2024). Assessing the effects of cold atmospheric plasma on the natural microbiota and quality of pork during storage. Foods, 13(7), 1015.Search in Google Scholar
Syropoulou, F., Parlapani, F. F., Kakasis, S., Nychas, G. J. E., & Boziaris, I. S. (2021). Primary processing and storage affect the dominant microbiota of fresh and chill-stored sea bass products. Foods, 10(3), 671.SyropoulouF.ParlapaniF. F.KakasisS.NychasG. J. E. & BoziarisI. S. (2021). Primary processing and storage affect the dominant microbiota of fresh and chill-stored sea bass products. Foods, 10(3), 671.Search in Google Scholar
Sarmah, B., & Aruna, G. (2020, August). Detection of food quality and quantity at cold storage using IoT. In 2020 International Conference on Wireless Communications Signal Processing and Networking (WiSPNET) (pp. 200-203). IEEE.SarmahB. & ArunaG. (2020, August). Detection of food quality and quantity at cold storage using IoT. In 2020 International Conference on Wireless Communications Signal Processing and Networking (WiSPNET) (pp. 200-203). IEEE.Search in Google Scholar