990 resultados para animal fat


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A utilização de resíduos orgânicos, como fertilizantes e condicionadores de solo, requer sua maturação e monitoramento da qualidade do material resultante. A vermicompostagem é uma técnica que, ao longo do processo, elimina os potenciais efeitos adversos dos resíduos à saúde humana e ao solo. A avaliação das substâncias húmicas (SH) nos produtos finais quanto à quantidade e à qualidade permite inferir sobre o grau de estabilidade e maturidade dos vermicompostos. Este trabalho objetivou avaliar a qualidade de seis vermicompostos das seguintes matérias-primas: esterco bovino (EB), esterco ovino (EO), esterco suíno (ES), esterco de codorna (EC), borra de café (BC) e de erva-mate (BE) com respeito ao teor de ácidos húmicos (AH) e de ácidos fúlvicos (AF) e às suas características químicas, após 70 dias de compostagem. O fracionamento químico da matéria orgânica foi realizado com base na solubilidade em meio básico e ácido e a distribuição de cada fração calculada como percentual do C total. Foram calculados os índices de humificação: percentual de AH e razão AH/AF. Nos AH e AF purificados, determinaram-se a composição elementar (CHNO), a composição química por espectroscopia de infravermelho com transformada de Fourier (FTIR) e o índice de aromaticidade I1630/I2920. O teor de substâncias húmicas (AH+AF) decresceu na seqüência: BC > EO≈ BE≈ EB > ES > EC, tendo sua composição química também diferido entre os vermicompostos. O grau de maturidade foi superior nos vermicompostos de resíduos de origem vegetal (borra de café e de erva-mate). Os AH desses dois vermicompostos apresentaram menor proporção de grupos oxigenados e menor caráter aromático.

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Newsletter produced by Department of Agriculture and Land Stewardship about the animal industry in Iowa.

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Newsletter produced by Department of Agriculture and Land Stewardship about the animal industry in Iowa.

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Newsletter produced by Department of Agriculture and Land Stewardship about the animal industry in Iowa.

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Newsletter produced by Department of Agriculture and Land Stewardship about the animal industry in Iowa.

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Body mass index (BMI) is related with cardiorespiratory fitness (CRF), but less is known regarding the combined relationships between BMI and body fat (BF) on CRF. Cross-sectional study included 2361 girls and 2328 boys aged 10–18 years living in the area of Lisbon, Portugal. BMI was calculated by measuring height and weight, and obesity was assessed by international criteria. BF was assessed by bioimpedance. CRF was assessed by the 20-m shuttle run and the participants were classified as normal-to-high or low-CRF level according to Fitness gram criterion-referenced standards. The prevalence of low CRF was 47 and 39% in girls and boys, respectively. The corresponding values for the prevalence of obesity were 4.8 and 5.6% (not significant) and of excess BF of 12.1 and 25.1% (P <0.001), respectively. In both sexes, BMI and BF were inversely related with CRF: r = – 0.53 and – 0.45 for BMI and % BF, respectively, in boys and the corresponding values in girls were – 0.50 and – 0.33 (all P <0.01). When compared with a participant with normal BMI and BF, the odds ratios (95% confidence interval) for low CRF were 1.94 (1.46–2.58) for a participant with normal BMI and high BF, and 6.19 (5.02–7.63) for a participant with high BMI and high BF. The prevalence of low-CRF levels is high in Portuguese youths. BF negatively influences CRF levels among children/adolescents with normal BMI.

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ABSTRACT Fat oxidation kinetics: effect of exercise. During graded exercise, absolute whole body fat oxidation rates increase from low to moderate intensities, and then markedly decline at high intensities, implying an exercise intensity (Fatmax) at which the fat oxidation rate is maximal (MFO). The main aim of the present work was to examine the effect of exercise on whole body fat oxidation kinetics. For this purpose, a sinusoidal mathematical model (SIN) has been developped in the first study to provide an accurate description of the shape of fat oxidation kinetics during graded exercise, represented as a function of exercise intensity, and to determine Fatmax and MFO. The SIN model incorporates three independent variables (i.e., dilatation, symmetry, and translation) that correspond to main expected modulations of the basic fat oxidation curve because of factors such as mode of exercise or training status. The results of study 1 showed that the SIN model was a valuable tool to determine Fatmax and MFO, and to precisely characterize and quantify the different shape of fat oxidation kinetics through its three variables. The effectiveness of the SIN model to detect differences in fat oxidation kinetics induced by a specific factor was then confirmed in the second study, which quantitatively described and compared fat oxidation kinetics in two different popular modes of exercise: running and cycling. It was found that the mean fat oxidation kinetics during running was characterized by a greater dilatation and a rightward asymmetry compared with the symmetric parabolic curve in cycling. In the two subsequent studies, the effect of a prior endurance exercise of different intensities and durations on whole body fat oxidation kinetics was examined. Study 3 determined the impact of a 1-h continuous exercise bout at an exercise intensity corresponding to Fatmax on fat oxidation kinetics during a subsequent graded test, while study 4 investigated the effect of an exercise leading to a more pronounced muscle glycogen depletion. The results of these two latter studies showed that fat oxidation rates, MFO, and Fatmax were enhanced following endurance exercise, but were increased to a greater extent with a more severe mucle glycogen depletion, inducing therefore modifications in the postexercise fat oxidation kinetics (i.e., greater dilatation and rightward asymmetry). In perspective, further studies have been suggested 1) to assess physiological meaning of the three independent variables of the SIN model; and 2) to compare the effect of two different training programs on fat oxidation kinetics in obese subjects.

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Antibióticos têm sido utilizados em grandes quantidades nas criações animais. Muitas dessas moléculas não são totalmente metabolizadas no organismo animal e seus resíduos têm sido detectados em amostras de solo, água superficial e subterrânea. A ocorrência desses resíduos no ambiente pode favorecer a resistência de microrganismos aos agentes antibióticos, além de causar problemas de ordem toxicológica a determinados organismos vivos. Os antibióticos de uso veterinário são, no geral, representados por moléculas anfóteras, com vários grupos funcionais ionizáveis (diferentes valores de pKa), massas molares bastante variáveis (172 a 916 g mol-1) e baixos potenciais de volatilização (pressão de vapor < 1,1 x 10-11 mm Hg). Em relação aos pesticidas, esses compostos apresentam maiores valores de solubilidade em água e menores valores de coeficiente de partição n-octanol-água (log Kow), provavelmente devido à presença de muitos grupos funcionais ionizáveis, o que sugere menor potencial de bioacumulação e maior mobilidade no solo. No presente trabalho avaliam-se o uso de antibióticos e a importância da produção animal no Brasil, aspectos do seu comportamento ambiental em condições de clima temperado e, por fim, enfatiza-se a necessidade de conduzir investigações sobre sua ocorrência e comportamento em solos muito intemperizados, predominantes nos ambientes tropicais.

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Evidence is accumulating that total body mass and its relative composition influence the rate of fat utilization in man. This effect can be explained by two factors operating in concert: (i) the effect of the size of the tissue mass and (ii) the nature of the fuel mix oxidized, i.e. the proportion of energy derived from fat vs. carbohydrate. In a cross-sectional study of 307 women with increasing degrees of obesity, we observed that the respiratory quotient (RQ) in post-absorptive conditions became progressively lower with increased body fatness, indicating a shift in substrate utilization. However, the RQ is known to be also influenced by the diet commonly ingested by the subjects. A short-term mixed diet overfeeding in lean and obese women has also demonstrated the high sensitivity of RQ to changes in energy balance. Following a one-day overfeeding (2500 kcal/day in excess of the previous 24 h energy expenditure), the magnitude of increase in RQ was identical in lean and obese subjects and the net efficiency of substrate utilization and storage was not influenced by the state of obesity.

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PURPOSE: The combination of embolic beads with a multitargeted tyrosine kinase inhibitor that inhibits tumor vessel growth is suggested as an alternative and improvement to the current standard doxorubicin-eluting beads for use in transarterial chemoembolization. This study demonstrates the in vitro loading and release kinetics of sunitinib using commercially available embolization microspheres and evaluates the in vitro biologic efficacy on cell cultures and the resulting in vivo pharmacokinetics profiles in an animal model. MATERIALS AND METHODS: DC Bead microspheres, 70-150 µm and 100-300 µm (Biocompatibles Ltd., Farnham, United Kingdom), were loaded by immersion in sunitinib solution. Drug release was measured in saline in a USP-approved flow-through apparatus and quantified by spectrophotometry. Activity after release was confirmed in cell culture. For pharmacokinetics and in vivo toxicity evaluation, New Zealand white rabbits received sunitinib either by intraarterial injection of 100-300 µm sized beads or per os. Plasma and liver tissue drug concentrations were assessed by liquid chromatography-tandem mass spectroscopy. RESULTS: Sunitinib loading on beads was close to complete and homogeneous. A total release of 80% in saline was measured, with similar fast-release profiles for both sphere sizes. After embolization, drug plasma levels remained below the therapeutic threshold (< 50 ng/mL), but high concentrations at 6 hours (14.9 µg/g) and 24 hours (3.4 µg/g) were found in the liver tissue. CONCLUSIONS: DC Bead microspheres of two sizes were efficiently loaded with sunitinib and displayed a fast and almost complete release in saline. High liver drug concentrations and low systemic levels indicated the potential of sunitinib-eluting beads for use in embolization.

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The structural stability and restructuring ability of a soil are related to the methods of crop management and soil preparation. A recommended strategy to reduce the effects of soil preparation is to use crop rotation and cover crops that help conserve and restore the soil structure. The aim of this study was to evaluate and quantify the homogeneous morphological units in soil under conventional mechanized tillage and animal traction, as well as to assess the effect on the soil structure of intercropping with jack bean (Canavalia ensiformis L.). Profiles were analyzed in April of 2006, in five counties in the Southern-Central region of Paraná State (Brazil), on family farms producing maize (Zea mays L.), sometimes intercropped with jack bean. The current structures in the crop profile were analyzed using Geographic Information Systems (GIS) and subsequently principal component analysis (PCA) to generate statistics. Morphostructural soil analysis showed a predominance of compact units in areas of high-intensity cultivation under mechanized traction. The cover crop did not improve the structure of the soil with low porosity and compact units that hamper the root system growth. In areas exposed to animal traction, a predominance of cracked units was observed, where roots grew around the clods and along the gaps between them.