• Title/Summary/Keyword: Egg Shell Thickness

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A study on the Thickness of Egg Shell Membrane and Egg Shell in Quail Eggs (메추리의 난각과 난각막의 두께에 관한 연구)

  • 하정기
    • Korean Journal of Poultry Science
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    • v.7 no.2
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    • pp.47-53
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    • 1980
  • This study was carried out to investigate the variations in the thickness of egg shell and egg shell membrane of Quail eggs from July 25, 1978 to September 7, 1978. No. of eggs used in this experiment was 520 okay and all the eggs were purchased from a farm located in Jinju city. The results obtained are summarized as follows: 1. Egg shells of quail were classified as white egg shell with large spots, egg shell with large spots, violet egg shell with small spots and beige egg shell with small spots by the exterior shell colour and their average egg weights were 8.993g, 8.866g, 8.403g and 8.109g, respectively. 2. Average egg shell thickness of white egg shell with large spots, egg. shell with large spots, violet egg shell with small spots and beige on shell with small spots were 0.171mm, 0.169mm, 0.160mm, and 0.156mm, respectively. 3. Average eggs shell membrane of white egg shell with large spots, egg shell with large spots, violet egg shell with small spots and beige egg shell with small spots were 0.0449mm, 0.0431mm, 0.0398mm, and 0.0397mm, respectively. 4. Negative correlation coefficient was found between egg shell thickness ana egg shell membrane thickness, but it was not significant. 5. Comparing quail egg with fowl egg, the thickness of quail egg shell was much thinner than that of fowl egg, but egg shell membrane thickness was similar between the two.

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THE DEVELOPMENT OF THE WATER LOADED PRESSURE METHOD FOR MEASURING EGGSHELL QUALITY

  • Kang, C.W.;Nam, K.T.;Olson, O.E.;Carlson, C.W.
    • Asian-Australasian Journal of Animal Sciences
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    • v.9 no.6
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    • pp.723-726
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    • 1996
  • A water loaded pressure device using water as the breaking force was developed to evaluate eggshell strength and compared with a dropping ball techniques. Further, relationships of shell thickness and weight of eggs to shell strength were also studied. Values for both of the shell strength measuring methods showed a highly significant correlation (p < 0.001) with shell thickness. The water loaded pressure method had a much higher simple correlation coefficient for shell thickness (r = + 0.786) than the dropping ball method (r = + 0.577). The shell strength measured by the water loaded pressure method appeared not to be correlated to egg weight. On the other hand, the negative sign of the standard partial regression coefficient and the partial regression coefficient of egg weight in the estimated multiple regression equation implied that for a given shell thickness a larger egg tended to have less shell strength than a smaller egg.

Estimation of the Heritabilities and Genetic Correlations on Egg Shape Index and Internal Egg Qualities in Korean Native Chicken (한국재래계의 난형지수 및 난질에 대한 유전력 및 유전상관의 추정)

  • 한성욱;상병찬;이준헌;정욱수;상병돈
    • Korean Journal of Poultry Science
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    • v.25 no.3
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    • pp.103-111
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    • 1998
  • This study was carried out to estirnate the heritabilities and genetic correlations on egg shape index and internal egg qualities ; shell thickness, alburnin heights and Haugh units for breeding plan and selection in Korean native chicken. Data analyzed were the records of 46,908 eggs from 43() layers from April, 1994 to September, 1995. The egg shape index at the first egg, 300 days and 500 days of ages were 74.771, 74.468 and 73.702; the shell thickness were 0.345, 0.344 and 0. 334mm; the alburnen heights were 6.579, 6.130 and 5.318mm; the Haugh units were 86.859, 81.014 and 73.565 respectively. The heritability estimates of egg shape index and internal egg qualities based on the variance of sire, dam and combined components at 300 days of age were 0.136, 0.954 and 0.545 for egg shape index; 0.201, 0.622 and 0.421 for shell thickness; 0.410, 0.961 and 0.633 for albumen height ; 0.353, 0.962 and': 0.608 for Haugh units. The genetic correlation coefficient between shell thickness and albumen height was -0.044~0.824; 0.016~0.949 between Haugh units and shell thickness 0.313~0.941 between albumen height and Haugh units, respectively.

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산란형질에 대한 한국 재래닭 계통간 교배종의 잡종강세 및 결합능력 추정

  • 최철환;상병돈;김학규;조규호;정일정;상병찬;박창식;한성욱
    • Proceedings of the Korea Society of Poultry Science Conference
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    • 2002.11a
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    • pp.140-142
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    • 2002
  • This study was conducted to obtain some genetic information for developing superior Korean native chickens. Heterosis and combining ability effects were estimated with 1,080 progenies of full diallel crosses of 3 strains in Korean Native Chicken. The traits of egg productivity were Investigated, and heterosis effect, general combining ability, specific combining ability and reciprocal effect were analyzed model I of the Griffing's method 1. The general performance were 147.0 days in age at first egg laying, 71.8 eggs in egg numbers to 270 days, 50.1g in egg weight at 270 days, 75.6 in egg shape index, 356$\mu\textrm{m}$ in egg shell thickness, and 4.27kg/$\textrm{cm}^2$ in egg shell strength, respectively. According to result, heterosis effect revealed comparatively high in age at first egg laying, egg numbers, egg weight, and egg shell strength. The effects estimated highly in general combining ability for age at first egg laying, egg numbers, egg weight, egg shape Index and egg shell thickness, and in specific combining ability were egg numbers, egg weight and egg shell thickness, and in reciprocal effects for egg numbers, egg shape index, and egg shell thickness. This result could be used for developing Korean native chicken.

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A Study on the Thickness of Egg Shell and Egg Shell Membrane in Silky Fowl (오골계의 난각과 난각막의 두께에 관한 연구)

  • 하정기
    • Korean Journal of Poultry Science
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    • v.10 no.1
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    • pp.23-29
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    • 1983
  • This study was carried out to investigate the variabilities of the thickness of egg shell and shell membrane of silky fowl egg from April 11, 1983 to May 14, 1983. One hundred and twenty eggs used in this experiment were obtained from a Synanmyun silky fowl farm, Sanchungkun, Gyeongnam province. The results obtained are summarized as follows: 1. Total items investigated for the silky fowl egg; egg weight, egg shell weight, egg shell thickness of sharp end, middle part, and blunt end, egg shell membrane thickness of snarp end, middle part, and blunt end, breaking strength, length of egg(L), width of egg(W), and L/W, were measured as 36.58${\pm}$0.446g, 4.53${\pm}$0.079g, 0.32${\pm}$0.006mm 0.32${\pm}$0.047mm, 0.30${\pm}$0.056mm, 0.050${\pm}$0.001mm, 0.050${\pm}$0.001mm, 0.053${\pm}$0.001mm, 3.06${\pm}$0.101kg, 4.80${\pm}$0.024mm, 3.82${\pm}$0.010cm, and 1.26${\pm}$0.005, respectively. 2. Correlation coefficients among 66 combinations of 12 items were estimated. The correlation coefficients relating to egg weight, egg shell weight, egg shell thickness of sharp end, middle part, and blunt end breaking strength, length of egg (L), width of egg (W), and L/W were largely to be highly significant but those related egg shell membrane thickness of sharp end middle part, and blunt end were not significant, sometimes showing inverse correlation

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Egg Quality in Battery Cage and Free-Range Systems : with Reference to Comparison of Eggs Based on Price and Hens' Age (방사 사육과 배터리 사육 산란계에서 난질 : 난가와 산란계 주령에 따른 난질의 비교)

  • Kim, Dae-Woo;Kang, Seok-Min;Yang, Young-Rok;Kim, Ji-Min;Yoon, Hyung-Sook;Jeon, Jung-Hwan;Choi, Yang-Ho
    • Korean Journal of Organic Agriculture
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    • v.24 no.1
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    • pp.115-122
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    • 2016
  • The main purpose of the current study was to compare quality of eggs 1) produced from hens housed in battery cages vs. free range, 2) from young vs. old hens, and 3) tagged with the lowest vs. the highest price in a local franchised mart. The ages of hens, at which their eggs were used for the analysis of quality, were 70 weeks old in the experiment 1, 22 and 47 weeks old in the experiment 2, and were unknown in the experiment 3. Eggs were analyzed for weight, albumen height, Haugh unit, shell color, shell strength, shell thickness, shell weight, yolk color, yolk weight, and egg white weight. In the experiment 1, significant differences were detected between two housing systems in shell color, shell weight, yolk color, and yolk weight (P<0.05), but not in egg weight, albumen height, Haugh unit, shell strength, shell thickness, and egg white weight (P>0.05). Although egg weight was slightly but not significantly higher in battery cages by 2.2 g than in free range, yolk weight was significantly higher in battery cage (P<0.05). On the contrary, shell color was greatly increased in free range system by 68.5% compared with battery cage. In the experiment 2, there were significant differences between young and old hens in egg weight, albumen height, Haugh unit, shell strength, shell weight, yolk color and yolk weight (P<0.05). Egg weight, shell weight, yolk color and yolk weight were increased in old hens than young hens while albumen height, Haugh unit, and shell strength were decreased. In the experiment 3, egg weight, albumen height, Haugh unit, shell weight, and egg white weight were significantly higher in the highest priced eggs than the lowest ones (P<0.05), whereas shell strength and yolk color were lower (P<0.05) but shell color, shell thickness and yolk weight were not different (P>0.05). So, egg freshness was clearly higher in the highest priced ones than in the lowest (P<0.05). Due to the limited information on raising and husbandry of laying hens whose eggs were tested for egg quality in the current study, the present results should be cautiously interpreted while contributing to the future study as a basis in this field.

HERITABILITIES AND GENETIC CORRELATIONS OF EGG QUALITY TRAITS IN TAIWANS'S LOCAL CHICKEN

  • Chen, C.F.;Lee, Y.P.;Lee, Z.H.;Huang, S.Y.;Huang, H.H.
    • Asian-Australasian Journal of Animal Sciences
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    • v.6 no.3
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    • pp.433-440
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    • 1993
  • Means and standard errors of 285 Taiwan's local chicken and 429 Single Comb White Leghorn pullets at 35 wk of age were: egg weight (g) $48.3{\pm}0.3$, $54.6{\pm}0.3$, shell index $73.39{\pm}0.26$, $73.20{\pm}0.18$, shell color $15.23{\pm}0.40$, $0.88{\pm}0.27$, shell whiteness $72.61{\pm}0.57$, $90.00{\pm}0.35$, shell strength ($kg/cm^2$) $3.77{\pm}0.07$, $3.35{\pm}0.05$, shell thickness (mm) $0.38{\pm}0.003$, $0.38{\pm}0.002$, Haugh units $85.26{\pm}0.50$, $91.81{\pm}0.38$ and yolk percent (%) $30.17{\pm}0.18$, $27.32{\pm}0.16$ respectively. Theestimated heritabiliities of Taiwan's local chicken based on sire and dam components of variance were as follows: egg weight 0.20, shell index 0.1, shell color 0.87, shell whiteness 0.79, shell strength 0.37, shell thickness 0.14, Haugh units 0.24 and yolk percent 0.16. Genetic correlations based on sire and dam components of variance and covariance were also estimated. Generically, the shell index was positively correlated with egg weight, shell strength and yolk percent, and egg weight was negatively correlated with shell thickness, Haugh unit and yolk percent.

Investigation on the Egg Quality of the Ostrich Farming in Korea (우리 나라 농장 사육 타조 알의 난질 조사)

  • Song, Kwang-Taek;Oh, Hong-Rock
    • Korean Journal of Agricultural Science
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    • v.29 no.1
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    • pp.44-54
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    • 2002
  • The fresh eggs of African ostrich in Korea were used in this study to investigate their interior and exterior quality characteristics. In ostrich egg shape characteristics, long and short length were measured as 15.1~16.1 cm and 12.1~13.6 cm, respectively. The egg shape index was calculated as 81.0 and the egg shell showed a more g loss white in color than that of hen egg. Calculated breaking strength of egg shell and egg shell surface based on the equation were $41.155kg/cm^3$ and $804.7cm^2$, respectively. Average egg shell thickness including egg shell membrane was 1.89 mm and there are no differences among parts of the shell. The egg shell membrane thickness was 0.10 mm showing relatively thick in equator compared with that of blunt end. The ave rage number of egg shell pores was counted as $19.7/cm^2$ showing relatively high number of egg shell pores at point end and the total number of egg shell pores in an egg was estimated as 15,241. The relative port ion of each parts based on egg weight was estimated as 25.1% for egg yolk, 58.2% for egg white, 16.7% for egg shell and the ratio of egg yolk to egg white (Y/W) was 0.43. The average diameter and the ave rage height of ostrich egg white were 19.7 cm and 13.2 mm, respectively. Calculated the H.U (Haugh Unit) was -69.7 and the pH was 8.3. In ostrich egg yolk, the diameter, the height, the egg yolk index, and it's pH were calculated as 14.4 cm, 29.4 mm, 0.20, and 6.6, respectively. And the egg yolk color showed a more thin in yellow chroma compared with that of hen egg as due to it's thicker membrane.

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Determination of electrical and geometric properties of brown eggs

  • Sung Yong Joe;Jun Hwi So;Seon Ho Hwang;Soon Jung Hong;Seung Hyun Lee
    • Korean Journal of Agricultural Science
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    • v.49 no.4
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    • pp.909-921
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    • 2022
  • Eggs are considered an excellent complete food because they contain many major energy sources, including protein. Eggs are one of the most widely consumed foods worldwide, and egg consumption is steadily increasing. Eggs are generally classified according to their quality and weight. Various characteristics of eggs must be considered for the design and effective utilization of equipment used for the transport, processing, packaging, and storage of eggs. In this study, egg surface area, volume, density, etc. were measured according to the grade of the egg. The values of several geometrical properties that were measured tended to increase with increasing egg grade. The smallest grade eggs had the lowest shell thickness and density. The electrical conductivity of the eggshell and its contents was measured with a self-made electrode and equipment. The egg shell showed properties similar to insulators, and as the thickness increased, the electrical conductivity tended to increase. The electrical conductivity of the egg yolk showed almost constant values under all conditions. The electrical conductivity of the egg white and mixture was particularly low at 0.1 kHz. Fouling and electrode corrosion occurred in a low frequency region due to the egg white. In this study, various geometric and electrical characteristics of eggs were measured, and based on this, factors that could serve as new indicators for egg processed production were analyzed and investigated.

Effects of Sea Shell Supplementation on Egg Quality in Diets of Laying Hens (산란계 사료내 Sea Shell 첨가로 인한 난각질 향상에 미치는 효과)

  • 권오석;김인호;홍종옥;황일환;홍의철;이상환
    • Korean Journal of Poultry Science
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    • v.27 no.3
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    • pp.221-226
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    • 2000
  • This experiment was conducted to determine the effect of replacing limestone by sea shell on digestibility, egg strength and thickness, Ca and P of serum and Ca and P of tibia in layer hens. A total 54 brown layers was assigned to the treatments. There were six layers per replicate with three replicate per treatment. Treatments were layer diet with 7.5% limestone as control, 7.0% limestone and 0.5% sea shell in diet(SS0.5) and 6.5% limestone and 1.0% sea shell in diet(SS1.0). Digestibility of DM was significantly difference between SS0.5 and SS1.0(P〈0.05). Digestibilities of Ca and P were not affected by treatments(P〉0.05), however, SS1.0 tended to increase Ca and P digestibility compared to control. Egg thickness and egg strength were no differences among the treatments(P〉0.05). Differences of initial and finial period on Ca of plasma were significantly affected in the a.m. between SS0.5 and SS1.0(P〈0.05). However, there was no difference in Ca of plasma in the p.m. among the treatments and Ca of plasma in control had a tendency to decrease in the p.m. compared to that of treatments(P〉0.05). Ca of tibia was significantly increased by SS1.0 compared to control(P〈0.05). However, there was no difference in P of tibia among the treatments(P〉0.05). Based on these results, dietary supplemental sea shell mat have a role to improve the egg quality of layer hens.

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