The composition and polymeric structure of starch are the most important factors to determine the functional properties of rice. In an effort to relate the structural characteristics and its functional properties of starch in rice, molecular structural properties of starch from 6 rice cultivars were analysed. To relate the structure and function of starch the texture of Jeung-pyun made of rice were analyzed during retrogradation. The polymeric structure of rice starch was analyzed by debranching with isoamylase after gelatinization and fractionated with Sephadex G-75 gel filteration. The size fractionated debranched starch was categorized into four groups such as Fraction I, II, III and Intermediate Fraction depending in their max, The fractions with the max higher than 620 nm were designated as Fraction I, while those in the range of 600-620 nm and 540-600 nm as the Intermediate Fraction and Fraction II, respectively. The Fractions with the max lower than 540 were described as Fraction III. The average degree of polymerization (DP) of the Fraction I was estimated to be higher than 200, and those of other fractions, i.e. the Intermediate Fraction I, Fraction II and III were 150,45 and 25, respectively. The levels of Fraction I were varied from II to 35% of total sugar. The Fraction I showed the linear relationship with the amylse contents, and the Intermediate Fraction, which might contain the mixture of short chain of amylose and debranched long chain of amylopectin, were measured to be in the range of 2.7∼8.4%. The levels of fraction II and III, both to be considered as the branches of amylopectin, were ranged 14.5∼23.6% and 39.7∼73.0%, respectively. The ratio of Fraction III to Fraction II describing the degree of branch or compactness of amylopectin was estimated to be around 4.0 for waxy varieties and around 2.0 for high amylose cultivars. With these results, it can be suggested that the degree of branch of the amylopectin may effect on amylose contents of starch or rice versa, To invertigate processing aptitude of different rice cultivars for the preparation of Jeung-pyun, its texture was analyzed by Instron, hardness, cohesiveness, elasticity, gumminess and chewiness of Jeung-pyun made of rice showed the significant relationship with the amylose content. Hardness was increased during retrogradation of product, but the relationship between hardness and amylose content due to not only difference in amylose content but also difference in structural characteristics of starch. In analysis of relationship between structure of rice starch and mechanical properties of Jeung-pyun during retrogradation elasticity did not show any relationship before retrogradation bur during retrogradation showed significant correlation. With these result, it can be suggested that the degree of branch of the amylopectin may effect on elasticity during retrogradation. However hardness, cohesiveness, gumminess and chewiness which were significant different before retrogradation, showed some correlation with structure of rice starch during retrigradation.
This study was conducted to evaluate the physicochemical and sensory characteristics of chiffon cakes made with rice flour ranging from 20-100% in place of wheat flour. The water binding capacity of the rice flour was greater than that of the wheat flour and its fat binding capacity was lower than that of the wheat flour. The batter stability data indicated that the 100% treatment was better than the control, and specific gravity values and specific loaf volumes were lower in the samples with added rice flour. Texture analysis found no significant differences in hardness, adhesiveness, cohesiveness, gumminess, and chewiness between the control and the 100% treatment. In the case of crust color, the rice flour-added chiffon cakes did not show any significant differences for their 'a' values. In addition, their crumb color was not significantly different in terms of both their 'L' and 'a' values. According to the sensory evaluation, there was no significant difference in overall acceptability between the control and the rice flour-added chiffon cakes. The highest sensory scores were obtained by the 100% treatment for overall acceptance and moistness. However, flavor, cohesiveness, and brittleness were not significantly different. These study results show that wheat flour could be replaced by rice flour up to 100% in chiffon cake.
The gelatinized model food system were prepared by combining moisture, starch and protein, and the textural properties of their gels of different temperatures and times of heating were investigated by the use of Instron Universal Testing Machine. The hardness, springiness, cohesiveness, gumminess and chewiness of model foods had a high correlation with solid content and the regression equations between the hardness of model foods and moisture content heated for 20min. at $80{\circ}C$ were as follows; $H(PS_4)=18.6405-3.8201M+0.1959M^2,\;H(P_1S_1)=244.7933-5.692M+0.0332M^2,\;H(P_4S)=693.0292-16.6884M+0.1005M^2$, The correlation coefficients were $0.996^{**},\;0.998^{**}\;and\;0.998^{**}$, respectively. Total correlations between textural parameters and temperature and heating times were different according to model foods. The correlation between textural parameters was proportional to protein foods, but the hardness and cohesiveness of starch foods showed the relationship of inverse proportion. Under low solid content, the parameters of model foods appeared to decrease as protein content increased. Under high solid content, the parameters of protein foods were higher than those of starch foods above some level of protein content. The regression equation between the hardness and protein content heated for 20min. at $80^{\circ}C$ was as follows; Hardness(20%)=5.6858-13.5670P+$9.7758P^2$ and the correlation coefficient was $0.95^{**}$.
The objective of this study was to evaluate the quality characteristics of Sulgidduk added with cabbage powder. The moisture contents of Sulgidduk added with cabbage powder ranged from 37.2 to 33.7% and were significantly lower than those of the control. As the amount of cabbage powder increased, the L-value was reduced, while the a- and b-values were increased. In terms of textural characteristics, Hardness, Adhesiveness, Springiness, Cohesiveness, Gumminess, and Chewiness decreased with greater concentrations of cabbage powder. Sensory evaluation revealed that the favorite degree of color, flavor and taste received high increasing scores with increasing addition amounts of cabbage powder, while the Chewiness did not differ significantly (p<0.05) among the samples. The moistness found to be highest in the control, while it decreased as the amount of cabbage powder increased. The overall acceptance was highest as (6.00) for the Sulgidduk (CS6) that contained 6% of the cabbage powder. Overall, the results of this study indicate that adding 6% cabbage powder to Sulgidduk was produced the optimal results, and provided good quality characteristics and high overall acceptance.
The following research was done to develop a low calorie muffin that has good taste, as well as nutritional benefit. This was done through adding various nutritional qualities of Makgeolli Lees to muffins. It was found that adding Makgeolli Lees substantially increased the amount of ash, crude protein, crude fiber, and moisture. However, it decreased the amount of crude fat. It was also found that the volume, height, and weight all increased with a lower baking loss rate. Other testing on the hardness, expand chewiness, gumminess, and cohesiveness of the muffins with different amounts of Makgeolli Lees found that more Makgeolli Lees led to a lower hardness and chewiness. However, it did not affect the gumminess. "MLM10" with 10 g of added Makgeolli Lees had a cohesiveness that was significantly different from other samples. The cohesiveness of the other samples was substantially lower. "L-value", or lightness, as well as yellowness, decreased as more Makgeolli Lees was added. On the other hand, "a-value", or redness, increased as more Makgeolli Lees was added. A sensory test proved that Makgeolli Lees added muffins were not preferred over the control group in its color, texture, and overall preference, but was evaluated as "good". However, the Makgeolli Lees added muffins were evaluated better than the control group in the categories of "expanded", "uniformity", and "he size of the pores". Therefore, creating muffins by using Makgeolli Lees instead of fat was proven to be possible, and furthermore proved to be a viable substitute.
This study was conducted to evaluate the textural and sensory properties of Kong-sulgidduk prepared with two types of soyflour (yellow and black) according to the amount of added glutinous riceflour. The rheological properties of Kong-sulgidduk were changed by the amount of added glutinous riceflour. When the amount of added glutinous riceflour was increased from 10% to 40%, hardness, gumminess, and brittleness were significantly increased in the sulgidduk prepared with yellow soyflour. In the case of black soyflour, the addition of 10% glutinous riceflour began to increase in the gumminess and brittleness. The addition of 30% glutinous riceflour effected a significant increase in hardness. The addition of yellow soyflour resulted in higher cohesiveness, gumminess and brittleness scores than those of black soyflour. The results of color assessments demonstrated that the more glutinous riceflour was added to the sulgidduk, the lower were the L-values; however, as the b- and a-values of the sulgidduk prepared with yellow soyflour increased. The addition of the same quantity of glutinous riceflour to the sulgidduk prepared with black soyflour resulted in a reduction in a- and b-values as compared to the sulgidduk prepared with yellow soyflour. In our sensory evaluation, with to the increasing quantities of added glutinous riceflour, the moisture and chewiness values clearly increased. However, the addition of 10% glutinous rice flour resulted in the highest overall quality. Also, the addition of 20% and 30% black soyflour resulted in better scores than the yellow soyflour samples in terms of color, moisture, and overall acceptability. These results demonstrated that the addition of glutinous riceflour to Kong-sulgidduk improves the textual and sensory properties.
The objective of this study was to investigate by a sensory evaluation and mechanical examination the sensory and quality characteristics of wageobyune containing different ratios of ingredients such as lettuce (50%, 60% and 70%), sugar and water. The results of the sensory evaluation showed that wageobyung containing 50% lettuce had higher scores in the overall acceptability, color, flavor and chewiness preference. In the textural analysis of wageobyung, the springiness, cohesiveness and hardness were the highest and the chewiness, gumminess and adhesiveness were the highest in the 70% added samples. Increasing the lettuce content decreased the hunter's color L-value of wageobyung. The redness and yellowness of wageobyung were increased as more lettuce was added. The moisture content of wageobyung was higher in the samples containing 70% lettuce than those containing 50%.
The purpose of this study was to establish the most favorable processing method for soybean Dasik. Factors were kind of sugar (honey, syrup, oligo sugar), amount of sugar (50 g, 60 g, 70 g) and number of kneading (20 times, 30 times, 40 times). Physical characteristics were measured by moisture content, color difference and texture. Moisture content was increased in order of honey, oligo sugar and syrup. Lightness of soybean Dasik was different with amount of sugar. The tendency of L value and b value were dominent by honey. Lightness, redness and yellowness had no difference with the kind of sugar and number of kneading. Hardness was not a significant factor. Springiness was significantly different by the kind and amount of sugar. Cohesiveness, gumminess and chewiness was influenced by the kind and amount of sugar, the interaction of kind and amount of sugar.
"Suck-injulmi" is one of the Korean traditional rice cake made from glutinous rice and mugworts. The optimun conditions for the preparation of "Ssuck-injulmi" were investigated. The best recipe of "Ssuck-injulmi" was 1) adding 240 g (80%) glutinous rice flour and 60 g (20%) raw or boiled mugworts by hand milling, or boiled mugworts after steaming glutinous rice by hand milling. 2) adding 210 g (70%) glutinous rice and 90 g (30%) boiled mugworts by mechanical method. The Moisture of "Ssuck-injulmi" was 43.39%-51.33%. The Hardness of "Ssuck-injulmi" was high in the order of 54,53, 52, 51 and The Cohesiveness was 53, 54,51,52 and The Elasticity was 51,53,54,52 and The Gumminess and The Chewiness were 54, 53, 51, 52 and The Adhesiveness was 52, 53, 51, 54. The value of ′L′ was high in the 52, the value of ′a′ was 54 and the value of ′b′ was 53.
The objective of this study was to invesitigate the sensory and quality characteristics of Chicksulgi containing different ratios of ingredients such as arrowroot starch (10%, 20%, and 30%), sugar, honey, oligo-saccharide and water, by sensory evaluation and mechanical examination. The results of sensory evaluation showed that Chicksulgi containing 10% arrowroot starch had higher scores in overall acceptability, color and flavor preference. In the textural analysis of Chicksulgi, the springiness, cohesiveness, adhesiveness were the highest in the samples with 10% arrowroot starch, and the chewiness, gumminess, and hardness were the highest in the 30%-added samples. The hunter's color L value of Chicksulgi was decreased by the increase of arrowroot starch. The more arrowroot starch was added, the redness of Chicksulgi were increased, and yellowness of Chicksulgi were decreased. The moisture content of Chicksulgi was higher in the samples with 10% arrowroot starch than those with 30%.
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