In ovo feeding improves energy status of late-term chicken embryos Z Uni, PR Ferket, E Tako, O Kedar Poultry Science 84 (5), 764-770, 2005 | 525 | 2005 |
Effects of in ovo feeding of carbohydrates and beta-hydroxy-beta-methylbutyrate on the development of chicken intestine E Tako, PR Ferket, Z Uni Poultry science 83 (12), 2023-2028, 2004 | 406 | 2004 |
Oral exposure to polystyrene nanoparticles affects iron absorption GJ Mahler, MB Esch, E Tako, TL Southard, SD Archer, RP Glahn, ... Nature nanotechnology 7 (4), 264-271, 2012 | 364 | 2012 |
Biofortified indica rice attains iron and zinc nutrition dietary targets in the field KR Trijatmiko, C Dueñas, N Tsakirpaloglou, L Torrizo, FM Arines, ... Scientific reports 6 (1), 19792, 2016 | 341 | 2016 |
Morphological, molecular, and functional changes in the chicken small intestine of the late-term embryo Z Uni, E Tako, O Gal-Garber, D Sklan Poultry science 82 (11), 1747-1754, 2003 | 323 | 2003 |
The effect of heat stress on ovarian function of laying hens I Rozenboim, E Tako, O Gal-Garber, JA Proudman, Z Uni Poultry science 86 (8), 1760-1765, 2007 | 304 | 2007 |
Mucin gene expression and mucin content in the chicken intestinal goblet cells are affected by in ovo feeding of carbohydrates A Smirnov, E Tako, PR Ferket, Z Uni Poultry science 85 (4), 669-673, 2006 | 293 | 2006 |
Chronic zinc deficiency alters chick gut microbiota composition and function S Reed, H Neuman, S Moscovich, RP Glahn, O Koren, E Tako Nutrients 7 (12), 9768-9784, 2015 | 199 | 2015 |
Dietary inulin affects the expression of intestinal enterocyte iron transporters, receptors and storage protein and alters the microbiota in the pig intestine E Tako, RP Glahn, RM Welch, X Lei, K Yasuda, DD Miller British Journal of Nutrition 99 (3), 472-480, 2008 | 191 | 2008 |
Changes in chicken intestinal zinc exporter mRNA expression and small intestinal functionality following intra-amniotic zinc-methionine administration E Tako, PR Ferket, Z Uni The Journal of nutritional biochemistry 16 (6), 339-346, 2005 | 180 | 2005 |
Titanium dioxide nanoparticle ingestion alters nutrient absorption in an in vitro model of the small intestine Z Guo, NJ Martucci, F Moreno-Olivas, E Tako, GJ Mahler NanoImpact 5, 70-82, 2017 | 169 | 2017 |
Higher iron pearl millet (Pennisetum glaucum L.) provides more absorbable iron that is limited by increased polyphenolic content E Tako, SM Reed, J Budiman, JJ Hart, RP Glahn Nutrition journal 14, 1-9, 2015 | 113 | 2015 |
Identification of Black Bean (Phaseolus vulgaris L.) Polyphenols That Inhibit and Promote Iron Uptake by Caco-2 Cells JJ Hart, E Tako, LV Kochian, RP Glahn Journal of agricultural and food chemistry 63 (25), 5950-5956, 2015 | 110 | 2015 |
Using the domestic chicken (Gallus gallus) as an in vivo model for iron bioavailability E Tako, MA Rutzke, RP Glahn Poultry science 89 (3), 514-521, 2010 | 110 | 2010 |
The effect of wheat prebiotics on the gut bacterial population and iron status of iron deficient broiler chickens E Tako, RP Glahn, M Knez, JCR Stangoulis Nutrition Journal 13, 1-10, 2014 | 98 | 2014 |
Metabolic engineering of bread wheat improves grain iron concentration and bioavailability JT Beasley, JP Bonneau, JT Sánchez‐Palacios, LT Moreno‐Moyano, ... Plant Biotechnology Journal 17 (8), 1514-1526, 2019 | 95 | 2019 |
Polyphenolic compounds appear to limit the nutritional benefit of biofortified higher iron black bean (Phaseolus vulgarisL.) E Tako, SE Beebe, S Reed, JJ Hart, RP Glahn Nutrition journal 13, 1-9, 2014 | 85 | 2014 |
Biofortified red mottled beans (Phaseolus vulgaris L.) in a maize and bean diet provide more bioavailable iron than standard red mottled beans: Studies in poultry (Gallus … E Tako, MW Blair, RP Glahn Nutrition journal 10, 1-10, 2011 | 83 | 2011 |
Silicon dioxide nanoparticle exposure affects small intestine function in an in vitro model Z Guo, NJ Martucci, Y Liu, E Yoo, E Tako, GJ Mahler Nanotoxicology 12 (5), 485-508, 2018 | 80 | 2018 |
Intra amniotic administration of raffinose and stachyose affects the intestinal brush border functionality and alters gut microflora populations S Pacifici, J Song, C Zhang, Q Wang, RP Glahn, N Kolba, E Tako Nutrients 9 (3), 304, 2017 | 79 | 2017 |