The possibility of using dietary selenium-protein additive "Neoselen" for enrichment of pastes based on mussels with organic selenium has been investigated. The formulation of the pastes involved the use of the soft body of the freshwater mmussels of the genus Anodonta. The influence of the introduction of different percentage of the additive "Neoselen" on the organoleptic properties of the developed pastes based on freshwater mussels was investigated. It is found that the addition of additive "Neoselen" even more than 5% does not impair the taste and color of the developed pastes. Moisture content, moisture retention, fat-holding capacity and active acidity of the developed pastes were investigated. The moisture-holding and fat-holding capacity of the developed paste is determined. The difference in the consistency of pastes based on freshwater mussels with different percentage of unpowered additives was investigated by determining the values of plastic viscosity and modulus of elasticity. The regularities of the influence of the additive "Neoselen" on the general chemical and mineral composition of pastes based on freshwater mussels have been established. It is established that the addition of 1%, 3% or 5% in the paste of additive "Neoselen" can enrich it by 7.8, 23.4 and 39 mkg of selenium, respectively. Studies have shown that in the composition of both the control and experimental samples of pastes in the amount of protein, minerals and water content. With the increase of the content of the additive "Neoselen" in the formulation of pastes, the content of protein and minerals increases. The complex of qualitative characteristics of the developed pastes is investigated. The regularities of the influence of the component composition on the organoleptic and physicochemical and functional-technological characteristics of the minced systems based on freshwater mussels and the additive "Neoselen" have been established. It is established that the optimal doses of the use of additive "Neoselen" in the formulation of pastes ranges from 3-5%.
This article is devoted to the optimization of the formulations of mincemeat products (cutlets) based on the semi-finished product from the freshwater mussel of the genus Anodonta. Recipe of this semi-finished product that can be introduced into the composition of different groups of dishes and culinary products has been developed. The article presents the model developed of optimisation of the recipe composition of polycomponent systems according to the optimum daily consumption of protein, fats and carbohydrates, with the classical cutlet technology as an example. In the course of the research, a universal model of an orthogonal central composite design to optimize forcemeat products was developed based on the criterion of a balance of the basic nutrients. The orthogonal central composite design is described in detail with four (n) factors of the optimization of the formulations of forcemeat products, and the homogeneity of the dispersion is confirmed, using Cochran’s C test at the significance level of x (0.05). The significance of the statistical model and the reliability of the regression equation were determined with an F-test. An organoleptic evaluation of the composition of each formulation of forcemeat products on the basis of processed freshwater mussels was made during the experiment by analytical methods – the qualitative method and the developed profile analysis method according to a point scale. The obtained results were presented in the form of a 3D model constructed using the least-squares smoothing method. After the graphic data obtained and the results of the direct measurements had been studied and the regression equation interpreted, we determined that the optimum composition of forcemeat products based on the processed freshwater mussel was the sample having the ratio of proteins, fats, and carbohydrates 1:1.03:4.18, which is the closest to the optimum ratio (1:1:4), and the organoleptic rating 14.25. Besides, basing on formulation 21 developed by us, we have determined the content of minerals, in particular Ca, P, Mg, Fe, I2, in one portion.
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