234 results on '"Kraft, Jana"'
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2. Whole milk dairy foods and cardiometabolic health: dairy fat and beyond
3. In Utero Exposure to trans-10, cis-12 Conjugated Linoleic Acid Modifies Postnatal Development of the Mammary Gland and its Hormone Responsiveness
4. The impact of low-fat and full-fat dairy foods on symptoms of gastroesophageal reflux disease: an exploratory analysis based on a randomized controlled trial
5. Achtsamkeit in der Schule (AISCHU) – Evaluation der Weiterbildung für Lehrkräfte zur Stressreduktion
6. Are product placements in music videos beneficial for the artists? The impact of artist--product fit on viewers' persuasion knowledge and perceived credibility of the artist.
7. Plasma Branched-Chain Fatty Acids Reflect Dairy-Fat Intake in a Pilot Clinical Trial in Individuals with Prediabetes
8. Trans‐Fatty Acid‐Stimulated Mammary Gland Growth in Ovariectomized Mice is Fatty Acid Type and Isomer Specific
9. Investigations on the Echinodermata Biodiversity of Heligoland
10. Full-fat dairy products and cardiometabolic health outcomes: Does the dairy-fat matrix matter?
11. Nitrifier denitrification potentially dominates N2O production in a sandy soil – results from different fertilization and irigation regimes in potato cropping in Germany
12. Supplementary material to "Nitrifier denitrification potentially dominates N2O production in a sandy soil – results from different fertilization and irigation regimes in potato cropping in Germany"
13. Effects of seasonal variation and winter supplementation of ground whole flaxseed on milk fatty acid composition of dairy cows in organic farms in the northeastern United States
14. P30-033-23 Effect of Short-Term Full-Fat Yogurt Consumption on Circulating Inflammatory Biomarkers in Individuals With Prediabetes
15. Nutritional Composition of Hass Avocado Pulp
16. Full-fat versus fat-free yogurt improves postprandial markers of glucose homeostasis and fasting markers of glucose and lipid homeostasis in individuals with prediabetes
17. Nitrifier denitrification potentially dominates N2O production in a sandy soil – results from different fertilization and irigation regimes in potato cropping in Germany.
18. Alteration of essential fatty acids in secondary consumers across a gradient of cyanobacteria
19. PSXII-15 Impacts of Forage Maturity and Apple Cider Vinegar Supplementation on Fermentation Parameters Using Ruminal Batch Culture
20. Assessing the validity of plasma phospholipid fatty acids as biomarkers of dairy fat intake using data from a randomized controlled intervention trial
21. Diet-induced metabolic change induces estrogen-independent allometric mammary growth
22. Rumen bacterial communities shift across a lactation in Holstein, Jersey and Holstein × Jersey dairy cows and correlate to rumen function, bacterial fatty acid composition and production parameters
23. Dietary fat quality impacts metabolic impairments of type 2 diabetes risk differently in male and female CD-1® mice
24. Impact of low-fat and full-fat dairy foods on fasting lipid profile and blood pressure: exploratory endpoints of a randomized controlled trial
25. Dietary fat quality impacts metabolic impairments of type 2 diabetes risk differently in male and female CD-1® mice.
26. Omega-3 Fatty Acid Fortification of Flax Through Nutri-Priming
27. Achtsamkeit in der Schule (AISCHU) – Evaluation der Weiterbildung für Lehrkräfte zur Stressreduktion
28. Tissue and Circulating Fatty Acids as Biomarkers to Evaluate Long-Term Fat Intake Are Tissue and Sex Dependent in CD-1 Mice
29. Application of a Novel, Heated, Nine-Reflection ATR Crystal and a Portable FTIR Spectrometer to the Rapid Determination of Total Trans Fat
30. Ruminant-produced transs-fatty acids raise plasma total and small HDL particle concentrations in male Hartley guinea pigs
31. Impact of Low-Fat and Full-Fat Dairy Intake on Cardiovascular Disease Risk Factors: A Randomized Controlled Trial
32. Incorporation of Fatty Acids as a Biomarker of Dietary Intake and Source is Fatty Acid and Blood Fraction Specific in CD-1 Mice
33. Combining Results of Two GC Separations Partly Achieves Determination of All cis and trans 16:1, 18:1, 18:2 and 18:3 Except CLA Isomers of Milk Fat as Demonstrated Using Ag-Ion SPE Fractionation
34. Benefits and Limitations of Non-Transgenic Micronutrient Biofortification Approaches
35. The impact of diets rich in low-fat or\ full-fat dairy on glucose tolerance and its determinants: a randomized controlled trial
36. The conversion efficiency of trans-11 and trans-12 18:1 by [DELTA]9-desaturation differs in rats
37. Differences in CLA isomer distribution of cow's milk lipids
38. Biosynthesis and biological activity of rumenic acid: a natural CLA isomer
39. Dietary supplementation with 11trans- and 12trans-18:1 and oxidative stress in humans 1–3
40. The fate of forage plant DNA in farm animals: a collaborative case-study investigating cattle and chicken fed recombinant plant material
41. The Conversion Efficiency of trans-11 and trans-12 18:1 by Δ9-Desaturation Differs in Rats
42. Incorporation of Unique, Diet-derived Fatty Acids into Hepatic Tissue Is Associated with Improved Glucose Homeostasis in Aged CD-1 Mice (OR24-02-19)
43. Facility-dependent metabolic phenotype and gut bacterial composition in CD-1 mice from a single vendor: A brief report
44. Branched-Chain Fatty Acids—An Underexplored Class of Dairy-Derived Fatty Acids
45. Physicochemical and microstructural properties and probiotic survivability of symbiotic almond yogurt alternative using polymerized whey protein as a gelation agent
46. Fatty Acid Content of Retail Cow’s Milk in the Northeastern United States—What’s in It for the Consumer?
47. Colonic bacterial composition is sex-specific in aged CD-1 mice fed diets varying in fat quality
48. Systematic Analysis of trans and Conjugated Linoleic Acids in the Milk and Meat of Ruminants
49. Dietary supplementation with trans-11- and trans-12–18: 1 increases cis-9, trans-11-conjugated linoleic acid in human immune cells, but without effects on biomarkers of immune function and inflammation
50. Dietary supplementation with 11 trans- and 12 trans-18:1 and oxidative stress in humans1–3
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