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Research Article

Texture profile analysis of homogenized meat and plant-based patties

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Pages 2757-2771 | Received 01 Jun 2023, Accepted 01 Sep 2023, Published online: 21 Sep 2023

References

  • Rubio, N. R.; Xiang, N.; Kaplan, D. L. Plant-Based and Cell-Based Approaches to Meat Production. Nat. Commun. 2020, 11(1), 6276. DOI: 10.1038/s41467-020-20061-y.
  • Bourne, M. C. Food Texture and Viscosity, Concept and Measurement., 2nd ed.; Academic Press, Elsevier Science inprint: San Diego, California, USA, 2002; p. 416.
  • Friedman, H. H.; Whitney, J. E.; Szczesniak, A. S. The Texturometer - A New Instrument for Objective Texture Measurement. J. Food Sci. 1963, 28(4), 390–396. DOI: 10.1111/j.1365-2621.1963.tb00216.x.
  • Rosenthal, A. J. Instrumental Characterisation of Textural Properties of Solid and Semi-Solid Food. In Modifying Food Texture, Chen, J. Rosenthal, A., Eds.; Woodhead Publishing: Coventry, UK, 2015; Vol. 2; pp. 89–105. DOI: 10.1016/B978-1-78242-334-8.00004-3.
  • Trinh, K. T.; Steve, G. On the Texture Profile Analysis Test. Proceedings of Chemeca, Wellington, New Zealand, September, 2012.
  • Kealy, T. Application of Liquid and Solid Rheological Technologies to the Textural Characterization of Semi-Solid Foods. Food. Res. Int. 2006, 39(3), 265–276. DOI: 10.1016/j.foodres.2005.07.016.
  • Adam, S. S. M. Sensory and Instrumental Methods of Meat Evaluation. Int. J. Of Food Sci. And Agr. 2021, 5(4), 627–638. DOI: 10.26855/ijfsa.2021.12.010.
  • Rahman, M. S.; Al-Mahrouqi, A. I. Instrumental Texture Profile Analysis of Gelatin Gel Extracted from Grouper Skin and Commercial (Bovine and Porcine) Gelatin Gels. Int. J. Of Food Sci. And Nutr. 2009, 60(sup7), 229–242. DOI: 10.1080/09637480902984414.
  • Meilgaard, M. C.; Civille, G. V; Carr, B. T., Eds. Sensory Attributes and the Way We Perceive Them. In Sensory Evaluation Techniques, 4th ed; CRC Press: Boca Raton, FL, 2006; pp. 18. doi:10.1201/b16452.
  • Peyron, M. A.; Woda, A. An Update About Artificial Mastication. Current Opinion In Food Sci. 2016, 9, 21–28. DOI: 10.1016/j.cofs.2016.03.006.
  • Wee, M. S. M.; Goh, A. T.; Stieger, M.; Forde, C. G. Correlation of Instrumental Texture Properties from Textural Profile Analysis (TPA) with Eating Behaviours and Macronutrient Composition for a Wide Range of Solid Foods. Food Funct. 2018, 9(10), 5301–5312. DOI: 10.1039/C8FO00791H.
  • Barbera, S.; Glorio Patrucco, S.; Tassone, S.; Mabrouki, S. An Instrumental Protocol for Measuring Water Dynamics in Meat and Plant-Based Patties. Proceedings of 68th International Congress of Meat Science and Technology, Kobe, Japan, August 22-25, 2022.
  • Mabrouki, S.; Glorio Patrucco, S.; Tassone, S.; Barbera, S. Texture Profile Analysis on Raw Homogenized Meat and Plant-Based Patties. Proceedings of 68th International Congress of Meat Science and Technology, Kobe, Japan, August 22-25, 2022.
  • Barbera, S.; Tassone, S. Meat Cooking Shrinkage: Measurement of a New Meat Quality Parameter. Meat Sci. 2006, 73(3), 467–474. DOI: 10.1016/j.meatsci.2006.01.011.
  • Kaledaa, A.; Talvistua, K.; Vaikmaa, H.; Tammika, M.; Rosenvalda, S.; Vilua, R. Physicochemical, Textural, and Sensorial Properties of Fibrous Meat Analogs from Oat-Pea Protein Blends Extruded at Different Moistures, Temperatures, and Screw Speeds. Fut. Foods. 2021, 4, 100092. DOI: 10.1016/j.fufo.2021.100092.
  • Schreuders, F. K. G.; Schlangen, M.; Kyriakopoulou, K.; Boom, R. M.; Van der Goot, A. J. Texture Methods for Evaluating Meat and Meat Analogue Structures: A Review. Food Control. 2021, 2021, 127108103. DOI: 10.1016/j.foodcont.2021.108103.
  • AOAC. Animal feed. In Official Method of Analysis, 15th ed., Kenneth, H.; A.O.A.C. Inc.: Arlington, USA, 1990; Vol. 1, pp. 1132.
  • Rawson, H. L.; Marshall, V. M. Effect of ‘Ropy’ Strains of Lactobacillus delbrueckii Ssp. Bulgaricus and Streptococcus Thermophilus on Rheology of Stirred Yogurt. I. J. Food Sci. Technol. 1997, 32(3), 213–220. DOI: 10.1046/j.1365-2621.1997.00395.x.
  • Sandoval-Castilla, O.; Lobato-Calleros, C.; Aguirre-Mandujano, E.; Vernon-Carter, E. J. Microstructure and Texture of Yogurt as Influenced by Fat Replacers. Int. Dairy. J. 2004, 14(2), 151–159. DOI: 10.1016/S0958-6946(03)00166-3.
  • Kotwaliwale, N.; Bakane, P.; Verma, A. Changes in Textural and Optical Properties of Oyster Mushroom During Hot Air Drying. J. Food Eng. 2007, 78(4), 1207–1211. DOI: 10.1016/j.jfoodeng.2005.12.033.
  • Laurence, M.; Pierre, B.; Sandra, M.; Jean-François, M. The Relationship Between Chewing Activity and Food Bolus Properties Obtained from Different Meat Textures. Food Qual. Prefer. 2002, 13(7–8), 583–588. DOI: 10.1016/S0950-3293(02)00056-3.
  • Ili´c, J.; Djekic, I.; Tomasevic, I.; Oosterlinck, F.; Van den Berg, M. A. Materials Properties, Oral Processing, and Sensory Analysis of Eating Meat and Meat Analogs. Annu. Rev. Food Sci. Technol. 2022, 13(1), 193–215. DOI: 10.1146/annurev-food-090821-032332.
  • Ismail, I.; Hwang, Y. H.; Joo, S. T. Interventions of Two-Stage Thermal Sous-Vide Cooking on the Toughness of Beef Semitendinosus. Meat Sci. 2019, 157, 107882. DOI: 10.1016/j.meatsci.2019.107882.
  • Vasanthi, C.; Venkataramanujam, V.; Dushyanthan, K. Effect of Cooking Temperature and Time on the Physico-Chemical, Histological and Sensory Properties of Female Carabeef (Buffalo) Meat. Meat Sci. 2007, 2(2), 274–280. DOI: 10.1016/j.meatsci.2006.11.018.
  • Berry, B. W. Fat Level, High Temperature Cooking and Degree of Doneness Affect Sensory, Chemical and Physical Properties of Beef Patties. J. Food Sci. 1994, 59(1), 10–14. DOI: 10.1111/j.1365-2621.1994.tb06885.x.
  • Wilfong, A. K.; McKillip, K. V.; Gonzalez, J. M.; Houser, T. A.; Unruh, J. A.; Boyle, E. A. E.; O’Quinn, T. G. Determination of the Effect of Brand and Product Identification on Consumer Palatability Ratings of Ground Beef Patties. J. Anim. Sci. 2016, 94(11), 4943–4958. DOI: 10.2527/jas.2016-0894.