Hot-Melt Extruded Selenium: a Highly Absorbable Nano-Selenium in Lactating Sows Exposed to High Ambient Temperature
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[1] JunHyung Lee,et al. Evaluation of high nutrient diets and additional dextrose on reproductive performance and litter performance of heat-stressed lactating sows. , 2019, Animal science journal = Nihon chikusan Gakkaiho.
[2] Seokhee Lee,et al. Biological Evaluation of Hot-Melt Extruded Nano-selenium and the Role of Selenium on the Expression Profiles of Selenium-Dependent Antioxidant Enzymes in Chickens , 2019, Biological Trace Element Research.
[3] JunHyung Lee,et al. Effects of hot melt extrusion processed nano-iron on growth performance, blood composition, and iron bioavailability in weanling pigs , 2019, Journal of animal science and technology.
[4] N. Karrow,et al. Impact of Maternal Selenium Supplementation from Late Gestation and Lactation on Piglet Immune Function , 2019, Biological Trace Element Research.
[5] J. P. Palencia,et al. Heat negatively affects lactating swine: A meta-analysis. , 2018, Journal of thermal biology.
[6] A. Tiwary,et al. Enhancing solubility of poorly aqueous soluble drugs: critical appraisal of techniques , 2018, Journal of Pharmaceutical Investigation.
[7] Tianshu Yang,et al. Effect of Low-Selenium/High-Fat Diet on Pig Peripheral Blood Lymphocytes: Perspectives from Selenoproteins, Heat Shock Proteins, and Cytokines , 2018, Biological Trace Element Research.
[8] Alip Kumar,et al. Evaluation of high nutrient diets on litter performance of heat-stressed lactating sows , 2017, Asian-Australasian journal of animal sciences.
[9] B. Chae,et al. Fabrication and Characterizations of Hot-Melt Extruded Nanocomposites Based on Zinc Sulfate Monohydrate and Soluplus , 2017 .
[10] F. Dunshea,et al. Supplementation of selenium, vitamin E, chromium and betaine above recommended levels improves lactating performance of sows over summer , 2017, Tropical Animal Health and Production.
[11] Chin-Yang Kang,et al. Advances in hot-melt extrusion technology toward pharmaceutical objectives , 2017, Journal of Pharmaceutical Investigation.
[12] W. Guan,et al. Selenium and vitamin E in sow diets: I. Effect on antioxidant status and reproductive performance in multiparous sows , 2016 .
[13] Y. H. Kim,et al. Effects of Gestational Housing on Reproductive Performance and Behavior of Sows with Different Backfat Thickness , 2015, Asian-Australasian journal of animal sciences.
[14] Peter F Surai,et al. Selenium in Livestock and Other Domestic Animals , 2016 .
[15] S. Yahav,et al. Adaptation to hot climate and strategies to alleviate heat stress in livestock production. , 2012, Animal : an international journal of animal bioscience.
[16] M. Kankofer,et al. Antioxidant defence of colostrum and milk in consecutive lactations in sows , 2012, Irish Veterinary Journal.
[17] Min Wang,et al. Selenomethionine: an Effective Selenium Source for Sow to Improve Se Distribution, Antioxidant Status, and Growth Performance of Pig Offspring , 2011, Biological Trace Element Research.
[18] Min Wang,et al. Effect of Different Selenium Sources on Productive Performance, Serum and Milk Se Concentrations, and Antioxidant Status of Sows , 2011, Biological Trace Element Research.
[19] Fenghua Liu,et al. Effect of heat stress on the porcine small intestine: a morphological and gene expression study. , 2010, Comparative biochemistry and physiology. Part A, Molecular & integrative physiology.
[20] Anna K. Johnson,et al. Welfare of Pigs in the Farrowing Environment , 2009 .
[21] Yanbo Wang. Differential Effects of Sodium Selenite and Nano-Se on Growth Performance, Tissue Se Distribution, and Glutathione Peroxidase Activity of Avian Broiler , 2009, Biological Trace Element Research.
[22] J. Burgess,et al. Effects of temperature stress on growth performance and bacon quality in grow-finish pigs housed at two densities. , 2008, Journal of animal science.
[23] M. Svoboda,et al. Efficacy of Organic Selenium from Se-Enriched Yeast on Selenium Transfer from Sows to Piglets , 2008 .
[24] R. Kincaid,et al. Maternal selenium deficiency increases hydrogen peroxide and total lipid peroxides in porcine fetal liver , 2007, Biological Trace Element Research.
[25] I. Yoon,et al. Comparative effects of organic and inorganic selenium on selenium transfer from sows to nursing pigs. , 2006, Journal of animal science.
[26] D. Mahan,et al. Long-term effects of dietary organic and inorganic selenium sources and levels on reproducing sows and their progeny. , 2004, Journal of animal science.
[27] N. Lundeheim,et al. Effects of lactation length and weaning-to-service interval on subsequent farrowing rate and litter size in Landrace and Yorkshire sows in Thailand. , 2000, Theriogenology.
[28] D. Mahan. Effect of organic and inorganic selenium sources and levels on sow colostrum and milk selenium content. , 2000, Journal of animal science.
[29] J. Noblet,et al. Influence of high ambient temperatures on performance of multiparous lactating sows. , 1999, Journal of animal science.
[30] Armelle Prunier,et al. Influence of high ambient temperature on performance of reproductive sows , 1997 .
[31] D. Mahan,et al. Effect of inorganic or organic selenium at two dietary levels on reproductive performance and tissue selenium concentrations in first-parity gilts and their progeny. , 1996, Journal of animal science.
[32] J. Black,et al. Lactation in the sow during heat stress , 1993 .
[33] D. Marple,et al. Endocrine changes in sows exposed to elevated ambient temperature during lactation. , 1991, Domestic animal endocrinology.
[34] E. R. Miller,et al. Genetic predisposition of pigs to hypo- and hyperselenemia. , 1985, Journal of animal science.
[35] W. Horwitz. Official Methods of Analysis , 1980 .
[36] Board on Agriculture,et al. Nutrient requirements of swine , 1964 .