W.P. Weiss
Agricultural and Biological Sciences · The Ohio State University
Publications
230
Citations
10,595
Est. group size
~1
Recurring co-author estimate
Active years
50
Publishing since 1975
W.P. Weiss studies dairy cow nutrition, focusing on how diet composition (such as fiber, minerals, vitamins, and protein/amino acid content) affects milk production, energy use, digestion, and health in lactating cows. Much of the work involves practical feed formulation issues like feed composition tables, mineral requirements, and vaccination timing relative to diet changes. This research is aimed at improving dairy cattle feeding practices and the accuracy of nutrient requirement systems.
Publication output has declined over the past decade, dropping from around 12 papers in 2017 to a low of 2 in 2022-2023, with a modest rebound to 6 in 2024.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Effect of acid detergent lignin concentration for diets formulated to be similar in neutral detergent fiber content on energy utilization in lactating Jersey cows
Journal of Dairy Science · 2024
- Invited review: Limitations to current mineral requirement systems for cattle and potential improvements
Journal of Dairy Science · 2024
- Relative availability of 5 inorganic magnesium sources in nonpregnant nonlactating Holstein cows
Journal of Dairy Science · 2024
- Perspective and Commentary: Variation in nutrient composition of feeds and diets and how it can affect formulation of dairy cow diets
Applied Animal Science · 2024
- Perspective and Commentary: Use of soy-based feedstuffs in low-alfalfa, high–corn silage diets for dairy cows
Applied Animal Science · 2024
- Selenium, immunity, and disease in cattle
2024
- Evaluation of gross energy concentration of neutral detergent fiber contained in feed and fecal samples
JDS Communications · 2023
- Corn silage quality index: An index combining milk yield, silage nutritional and fermentation parameters
Animal Feed Science and Technology · 2021
- Concurrent and carryover effects of feeding blends of protein and amino acids in high-protein diets with different concentrations of forage fiber to fresh cows. 1. Production and blood metabolites
Journal of Dairy Science · 2021
- Concurrent and carryover effects of feeding blends of protein and amino acids in high-protein diets with different concentrations of forage fiber to fresh cows. 2. Protein balance and body composition
Journal of Dairy Science · 2021
- Effects of prepartum vaccination timing relative to pen change with an acidogenic diet on serum and colostrum immunoglobulins in Holstein dairy cows
Journal of Dairy Science · 2021
- Effect of timing of prepartum vaccination relative to pen change with an acidogenic diet on lying time and metabolic profile in Holstein dairy cows
Journal of Dairy Science · 2021
- Effects of metabolizable protein concentration, amino acid profile, and fiber source on the messenger RNA expression of skeletal muscle in peripartum dairy cows
Journal of Dairy Science · 2021
- Effects of oscillating dietary crude protein concentrations on production, nutrient digestion, plasma metabolites, and body composition in lactating dairy cows
Journal of Dairy Science · 2020
- Factors that affect heat production in lactating Jersey cows
Journal of Dairy Science · 2020
- Journal of Dairy Science×36
- Journal of Animal Science×4
- Animal Feed Science and Technology×2
- Applied Animal Science×2
- Encyclopedia of Dairy Sciences×2
- R. P. Lemenager
Agricultural and Biological Sciences · Purdue University West Lafayette
- L.R. Rebelo
Agricultural and Biological Sciences · The Ohio State University
- Chanhee Lee
Agricultural and Biological Sciences · The Ohio State University
- Alejandro E Relling
Agricultural and Biological Sciences · The Ohio State University
- C. Lee
Agricultural and Biological Sciences · The Ohio State University
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 19, 2026.
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