Published December 21, 2021 | Version v1
Journal article Open

Formation of consumer preferences in the fish restaurants menu based on sensory characteristics

Description

The object of research is fish culinary products in the jelly pouring of the menu of conceptual restaurants. The subject of research is the consumer characteristics of gelling fish broth for culinary products based on sensory characteristics.

The study used methods for determining the consumer characteristics of fish culinary products based on physical, chemical, aesthetic and sensory analysis. Methods for the preliminary preparation of hydrocolloids as structure-forming agents for the preparation of gelling culinary products with the study of the parameters of the jelly formation process are proposed. The developed ingredient composition of fish culinary products based on low methoxylated pectin and sodium alginate improves the consumer characteristics of the finished dish. This ensures the implementation of strategic decisions in the food industry through the introduction of innovative technologies and the release of products with new consumer and functional properties. It is the new ingredient composition of the fish culinary products in the pouring that opens the priorities in the creation of the wellness products industry with the aim of improving the health of consumers. The active elements of algae are absorbed almost completely through a chemical composition close to that of human plasma. As a result, algae are able to compensate for the lack of elements and contribute to the normalization of metabolism. The use of low-esterified pectin is due to its structure-forming, therapeutic and prophylactic, sorption, antibacterial properties, which are an alternative to antibiotics and synthetic preservatives to prevent bacterial spoilage. The use of dietary supplements based on sodium alginate and pectin in food products provide an adjustable texture with new rheological and functional properties, which have a positive effect on the commodity performance of finished products for promotion on the market of healthy food restaurants.

On the basis of the sensory indicator, rational parameters of the recipe of fish culinary products in jelly pouring were determined to obtain a transparent, stable, homogeneous elastic consistency, which will expand the range of the wellness menu of restaurants of the Wellness concept.

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References

  • Khrystova, T. Ye. (2018). Priorytet zdorovoho sposobu zhyttia studentiv. Ekolohiia – filosofiia isnuvannia liudstva, 131–135.
  • Goodyear, V. A., Kerner, C., Quennerstedt, M. (2017). Young people's uses of wearable healthy lifestyle technologies; surveillance, self-surveillance and resistance. Sport, Education and Society, 24 (3), 212–225. doi: http://doi.org/10.1080/13573322.2017.1375907
  • Sansone, F., Mencherini, T., Picerno, P., Lauro, M. R., Cerrato, M., Aquino, R. P. (2019). Development of Health Products from Natural Sources. Current Medicinal Chemistry, 26 (24), 4606–4630. doi: http://doi.org/10.2174/0929867325666180926152139
  • Küster-Boluda, I., Vidal-Capilla, I. (2017). Consumer attitudes in the election of functional foods. Spanish Journal of Marketing – ESIC, 21, 65–79. doi: https://doi.org/10.1016/j.sjme.2017.05.002
  • Sidorova, I. G. (2019). Kontseptsiia Wellness v meditsinskom diskurse (na materiale russkoiazychnykh i angloiazychnykh tekstov internet-saitov o zdorovom obraze zhizni). K 63 Kommunikativnye strategii i lingvokognitivnye mekhanizmy porozhdeniia professionalnogo diskursa. Irkutsk: IGMU, 137–146.
  • Ashwell, M. (2004). Concepts of functional food. Nutrition & Food Science, 34 (1), 47. doi: https://doi.org/10.1108/nfs.2004.34.1.47.3
  • Barysheva, Y., Glushkov, O., Manoli, T., Nikitchina, T., Bezusov, A. (2017). Substantiation of hot smoking parameters based on sensory researches in hot fish marinades technology in the jelly pouring. EUREKA: Life Sciences, 5, 33–38. doi: https://doi.org/10.21303/2504-5695.2017.00420
  • Bai, L., Wang, M., Yang, Y., Gong, S. (2019). Food safety in restaurants: The consumer perspective. International Journal of Hospitality Management, 77, 139–146. doi: https://doi.org/10.1016/j.ijhm.2018.06.023
  • Chugunova, O. V., Zavorokhina, N. V. (2010). Ispolzovanie metodov degustatsionnogo analiza pri modelirovanii retseptur pischevykh produktov s zadannymi potrebitelskimi svoistvami. Ekaterinburg: Izd-vo Ural. gos. ekon. un-ta, 148.
  • Parkhutova, I. I. (2010). Nauchno-eksperimentalnoe obosnovanie is-polzovaniia strukturoreguliruiuschikh kompozitsii pri proizvodstve rybnykh kulinarnykh izdelii v termostoikikh geleobrazuiuschikh zalivkakh. Izvestiia TINRO, 163, 414–429.
  • Nikitchina, T. I., Manoli, T. A., Barysheva, Ia. O. (2015). Development of antihunt systems of sauces in the technology of fish products. Eastern-European Journal of Enterprise Technologies, 2 (10 (74)), 19–24. doi: http://doi.org/10.15587/1729-4061.2015.39801
  • Cao, L., Lu, W., Mata, A., Nishinari, K., Fang, Y. (2020). Egg-box model-based gelation of alginate and pectin: A review. Carbohydrate Polymers, 242, 116389. doi: https://doi.org/10.1016/j.carbpol.2020.116389
  • Zavadlav, S., Blažić, M., Van de Velde, F., Vignatti, C., Fenoglio, C., Piagentini, A. M. et. al. (2020). Sous-Vide as a Technique for Preparing Healthy and High-Quality Vegetable and Seafood Products. Foods, 9 (11), 1537. doi: https://doi.org/10.3390/foods9111537
  • Zhang, H., Zhang, F., Yuan, R. (2020). Applications of natural polymer-based hydrogels in the food industry. Hydrogels Based on Natural Polymers. Elsevier, 357–410. doi: https://doi.org/10.1016/b978-0-12-816421-1.00015-x
  • Hilbig, J., Hartlieb, K., Gibis, M., Herrmann, K., Weiss, J. (2020). Rheological and mechanical properties of alginate gels and films containing different chelators. Food Hydrocolloids, 101, 105487. doi: https://doi.org/10.1016/j.foodhyd.2019.105487
  • Williams, P. A., Phillips, G. O. (2009). Introduction to food hydrocolloids. Handbook of Hydrocolloids. Woodhead Publishing Limited, 1–22. doi: https://doi.org/10.1533/9781845695873.1
  • Maeda, H., Nakamura, A. (2021). Soluble soybean polysaccharide. Handbook of Hydrocolloids. Elsevier, 463–480. doi: https://doi.org/10.1016/b978-0-12-820104-6.00025-5
  • Presentato, A., Scurria, A., Albanese, L., Lino, C., Sciortino, M., Pagliaro, M. et. al. (2020). Superior Antibacterial Activity of Integral Lemon Pectin Extracted via Hydrodynamic Cavitation. ChemistryOpen, 9 (5), 628–630. doi: https://doi.org/10.1002/open.202000076
  • Ciriminna, R., Meneguzzo, F., Delisi, R., Pagliaro, M. (2017). Olive Biophenols as New Antioxidant Additives in Food and Beverage. ChemistrySelect, 2 (4), 1360–1365. doi: https://doi.org/10.1002/slct.201601900
  • Saha, D., Bhattacharya, S. (2010). Hydrocolloids as thickening and gelling agents in food: a critical review. Journal of Food Science and Technology, 47 (6), 587–597. doi: https://doi.org/10.1007/s13197-010-0162-6