• Title/Summary/Keyword: 에너지 대사

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Effect of Exercise and Diet Control Program for Obese Children (비만아동을 위한 운동 및 식이조절 효과에 관한 연구)

  • 오승호;김유섭;이성숙
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.25 no.2
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    • pp.214-224
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    • 1996
  • 본 연구는 비만아동을 위한 효과적인 운동 및 식이 요법에 관한 자료를 얻기 위하여 실시하였다. 대상자는 8~12세의 비만아동(체지방 $36.1\pm1.3%)과$ $정상아동(18.9\pm1.3%)$ 각각 5명이었으며 3일간 실험환경에 적응하기 위한 대조기간(Control : C)을 거친후 1주간은 운동은 부하하되 에너지는 제한하지 않는 운동기간(Exercise without energy deficit : EEN)와 다음 1주간은 비만아동만을 대상으로 운동부하와 동시에 에너지를 제한하는 에너지 제한 운동기간(Exercise with energy deficit : EED)으로 나누어 실시하였다. 운동강도는 60~75%HRmax이었으며 에너지 제한량은 493kcal/day이었다. 각 실험 조건별 대사에너지 섭취량, 체중, 체성분, 체내 보유 에너지, 에너지 소비량의 변화를 측정하였다. 체지방량은 생체 전기저항 지방측정기를 이용하여 측정하였다. 대변 및 소변으로의 에너지 손실량으로부터 측정한 1일 평균 대사 에너지량(ME)은 정상아동이 대조기간(C) 및 운동기간(EEN)별로 각각 $1802\pm50kcal$$1771\pm72kcal이었고$ 비만아동이 대조기간(C) 및 운동기간(EEN) 및 에너지 제한 운동기간(EED)별로 각각 $2152\pm138kcal,$ $1861\pm138kcal$$1368\pm87kcal이었다.$ 대조기간(C)에 비만 아동은 정상아동에 비해 대사에너지량(ME)이 높았으나 무지방조직(LBM) kg당 섭취량은 정상아동이 79kcal이며 비만아동이 70kcal로 오히려 비만아동의 경우가 낮았다. 대체로 운동에 의해 에너지 섭취량은 감소되었다. 동일한 운동 부하로 정상아동 및 비만아동의 체중은 각각 $1.00\pm0.20kg$$1.24\pm0.22kg씩$ 감소되어 정상아동에 비하여 비만아동의 체중감소가 더 많았다. 비만아동에서 에너지 제한(493kcal)으로 인한 체중감소량은 0.52kg이었고 체지방조직량(FM)은 0.46kg이었다. 운동기간(EEN)중 체성분 변동량으로부터 산출한 1일 1인당 체내 에너지 변동량은 정상아동이 1092kcal, 비만아동이 1270kcal 감소디어 비만아동의 에너지 소모량이 더 많았다. 비만아동에 있어 에너지제한 운동기간(EEN)에 정상아동이 $2863\pm58kcal,$ 비만아동이 $3131\pm158kcal이었으며,$ 에너지 제한 운동기간(EED)에 비만아동은 $3153\pm151kcal이었다.$ 이상의 성적으로 보아 본 실험에 적용한 운동 프로그램은 체중 감소에 효과적으로 작용하나 일부 부지방조직(LBM)의 감소를 동반하는 것으로 보아 다소 운동 부하량이 과도한 것으로 생각된다. 그러나 에너지 제한량(500kcal)은 체중감소에 매우 효율적인 것으로 평가되어 이후 비만아동의 체중조절에 본 실험의 에너지제한 운동 프로그램중 운동 부하량만을 다소 줄여 적용하면 매우 효과적일 것이라 생각된다.

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Anti-obesity Effects of Tae-Um-Jo-Wee-Tang and Do-Dam-Tang in Female Rats with Diet-induced Obesity (고지방식이로 비만을 유도한 암컷 백서에서 태음조위탕과 도담탕의 항비만 효과 및 기전)

  • Park, Sun-Min;Ahn, Il-Sung;Kim, Da-Sol;Kang, Sun-A;Kwon, Dae-Young;Yang, Hye-Jeong
    • Journal of Applied Biological Chemistry
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    • v.53 no.1
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    • pp.44-50
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    • 2010
  • Tae-Um-Jo-wee-Tang (TUJWT) and Do-Dam-Tang (DDT) have been used as an anti-obesity herbal medicine but their effect and mechanism of action have not been studied. We investigated the effects of TUJWT and DDT on energy and glucose homeostasis using Sprague Dawley female rats with diet-induced obesity. The mechanisms of action of TUJWT and DDT were studied whether they had anti-obesity effects. Rats fed a high-fat diet were divided into 3 groups: rats in each group received 2 g water extracts of modified TUJWT and DDT, or 2 g cellulose per kg body weight (a negative control) on a daily basis. A further group was fed a low-fat diet as a positive control. We found that DDT significantly decreased body weight and body fat (mesenteric fat and retroperitoneal fat) more than the control. This decrease was due to the reduction in energy intake but no changes of energy expenditure. However, DDT increased fat oxidation as a major energy source than the control. In addition, modified TUJWT and DDT improved glucose tolerance without changing serum insulin levels during an oral glucose tolerance test. In conclusion, DDT have a better anti-obesity effect than TUJWT by decreasing energy intake in female rats with diet-induced obesity. It also improves glucose tolerance.

Comparison of Energy Metabolisms between Laying and Non- laying Hen (산란계와 비산란계의 에너지대사 비교 시험)

  • 이영철
    • Korean Journal of Poultry Science
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    • v.13 no.1
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    • pp.31-40
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    • 1986
  • The energy metabolism with the normal laying hen and progesterone injected non-laying hen are compared. 1. The FHP of 109.7Kcal for laying hen was 25.5 percent higher than the 87.4 Kcal found for non-laying hen. 2. The MEm's of laying hen and non-laying hen were 149, and 135Kcal/Kg$\^$0.75/day and NAME's of the diets were 77 and 83 percent, respectively. For the laying hen shown negative retention in body energy during the experiment, the 77 percent NAME was the value of supporting egg production. For the non-laying hen shown the positive retention in body energy and zero egg production, the 83 percent NAME was of growth. 3. A change in body weight of 1g was comparable to 3.54 Kcal for laying hen, and 5.0 Kcal for non-laying hen, when calculated on regression equations between body weight change and body energy retention(BE). The figures indicate that the tissue energy is used with an efficiency of 70 percent for egg production. 4. Plasma level of triiodothyronine(T3) for the laying hen is appeared to be higher than that of non-laying hen, although the levels of thyroxine (T4) are equal both in laying and non-laying hen. 5. Activities of four hepatic enzymes(ATP citrate lyase, fructose diphosphate aldolase, isocitrate dehydrogenase and glutamte pyruvic transaminase) were significantly greater in the laying hen than in the non-laying hen.

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Studies on the Optimum Dietary Energy and Protein Levels in Laying Hen (산란계사료의 적정에너지 및 단백질수준에 관한 연구)

  • 이상진;이규호;정선부;오세정
    • Korean Journal of Poultry Science
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    • v.14 no.1
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    • pp.39-53
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    • 1987
  • A total of 1,440 White Leghorn pullets hatched in summer and winter, aged 20 to 72 weeks were fed 9 rations differing in dietary protein (13, 15 and 17%) and energy (2,500, 2,700 and 2,900 kcal/kg) levels for a period of 52 weeks in order to evaluate the optimum dietary energy and protein levels for laying hens. As metabolizable energy level increased from 2,500 to 2,900 kcal/kg of feed egg production, daily feed and protein intake and egg shell quality decreased, but reverse was true for the daily energy intake, energy requirement and feed cost per kg egg, body weight gain, nutrients utilizability and abdominal fat accumulation, Egg weight, viability and egg yolk Pigmentation were not affected by the dietary energy level. On the other hand, as dietary protein level increased from 13 to 17%, egg production, egg weight, daily protein intake, protein requirement per kg egg and body weight gain icreased, but daily feed and energy intake, feed and energy requirement per kg egg, egg yolk pigmentation and dry matter utilizability decreased, and no significant difference in the feed cost per kg egg, viability and egg shell quality was observed among dietary protein levels. However: the hens fed 15% and 17% Protein diets did not show significant differences in egg production, egg weight and body weight gain. For the entire laying period of 52 weeks, metabolizable energy level of 2,500 kcal/kg of feed and 15% dietary protein level were considered to be adequate to support the optimum productivity.

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Effects of Dietary Energy and Protein Levels on the Performance of Brown Layer in Summer (산란계 사료의 에너지 및 단백질 수준이 하절기에 있어서 갈색산란계의 생산성에 미치는 영향)

  • 이승우;이상진;김영일;오세정
    • Korean Journal of Poultry Science
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    • v.14 no.2
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    • pp.125-135
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    • 1987
  • Total 720 brown layers were fed 9 rations differing in metabolizable energy (2500, 2700 and 2900 kcal/kg) and crude protein (13, 15 and 17%) levels for a period of 12 weeks in order to study the effects of dietary energy and protein levels on the performance of brwon layer in summer. As metabolizable energy level increased from 2500 to 2900Kcal/kg of feed egg production, daily feed and protein intake were decreased, but daily energy intake, energy requirement and feed cost per kilogram of egg mass were increased. There were no significant difference in egg weight, feed conversion and motality among dietary energy levels. On the other hand, as dietary Protein level increased from 13 to 17% egg Production, egg weight, daily protein intake and protein requirement per kilogram of egg mass were increased, but feed and energy requirement and feed cost per kilogram or egg mass were decreased. However daily feed intake and mortality were not affected by dietary protein level.

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