Open Access
| Issue |
BIO Web Conf.
Volume 218, 2026
The 12th International Conference of Innovation in Animal Science: “Animal Agriculture and the SDGs: Balancing Productivity, Welfare, and Environmental Integrity (ICIAS 2025)
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|---|---|---|
| Article Number | 01005 | |
| Number of page(s) | 6 | |
| Section | Animal Nutrition | |
| DOI | https://doi.org/10.1051/bioconf/202621801005 | |
| Published online | 10 February 2026 | |
- Coleman, L., Back, P., Blair, H., López-Villalobos, N., & Hickson, R. (2021). Sire effects on birth weight, gestation length, and pre-weaning growth of beef-cross-dairy calves: A case study in New Zealand. Dairy, 2(3), 385–395. [Google Scholar]
- National Standardization Agency. Indonesian National Standard: (2022) Indonesian Friesian Holstein (FH) Dairy Cow Candidate. SNI 2735:2022. [Google Scholar]
- Huuskonen, A. (2017). Effects of skim milk and whey-based milk replacers on feed intake and growth of dairy calves. Journal of Applied Animal Research, 45(1), 480–484. [Google Scholar]
- Parsons, S.D., Steele, M.A., Leslie, K.E., Renaud, D.L., & DeVries, T.J. (2021). Effects of delaying increase in milk allowance and type of gradual weaning program on performance and health of calves fed lower levels of milk. Journal of Dairy Science, 104(10), 11176–11192. [Google Scholar]
- Ramadan, Z., Utamy, R.F., Hasbi, H., Ako, A., Maruddin, F., Niode, V., & Putri, I.B. (2025). Economic feasibility and growth performance of Holstein Friesian calves fed whey-dangke fortified green calf starter. American Journal of Animal and Veterinary Sciences, 20(2), 159–170.. [Google Scholar]
- Rocha-Mendoza, D., Kosmerl, E., Krentz, A., Zhang, L., Badiger, S., Miyagusuku-Cruzado, G., … & García-Cano, I. (2021). Invited review: Acid whey trends and health benefits. Journal of Dairy Science, 104(2), 1262–1275. [Google Scholar]
- Meale, S.J., Chaucheyras-Durand, F., Berends, H., Guan, L.L., & Steele, M.A. (2017). From pre-to postweaning: Transformation of the young calf's gastrointestinal tract. Journal of Dairy Science, 100(7), 5984–5995. [Google Scholar]
- Prokopidis, K., Morgan, P.T., Veronese, N., Morwani-Mangnani, J., Triantafyllidis, K.K., Kechagias, K.S., … & Witard, O.C. (2025). The effects of whey protein supplementation on indices of cardiometabolic health: A systematic review and meta-analysis of randomized controlled trials. Clinical Nutrition, 44, 109–121. [Google Scholar]
- Basiel, B.L., Macrina, A.L., & Dechow, C.D. (2020). Cholesterol deficiency carriers have lowered serum cholesterol and perform well at an elite cattle show. JDS communications, 1(1), 6–9. [Google Scholar]
- Ghasemi, E., Azad-Shahraki, M., & Khorvash, M. (2017). Effect of different fat supplements on performance of dairy calves during cold season. Journal of Dairy Science, 100(7), 5319–5328. [Google Scholar]
- Huff, T., Boyd, B., & Jialal, I. (2023). Physiology, CholesterolStatPearls Publishing: Treasure Island, Florida, United States. [Google Scholar]
- Ghaffari, M.H., Wilms, J.N., Caruso, D., Sauerwein, H., & Leal, L.N. (2024). Serum lipidomic profiling of dairy calves fed milk replacers containing animal or vegetable fats. Journal of Dairy Science, 107(11), 9997–10012. [Google Scholar]
- Murayama, K., Fukui, T., Kushibiki, S., Sakamoto, K., Inouchi, K., & Sugino, T. (2023). Effects of medium-chain fatty acids and tributyrin supplementation in milk replacers on growth performance, blood metabolites, and hormone concentrations in Holstein dairy calves. Journal of Dairy Science, 106(7), 4599–4607. [Google Scholar]
- Bailey, A., & Mohiuddin, S.S. (2025). Biochemistry, High Density Lipoprotein. StatPearls Publishing: Treasure Island, Florida, United States. [Google Scholar]
- Huang, C.H., Hsu, H.S., & Chiang, M.T. (2024). Influence of varied dietary cholesterol levels on lipid metabolism in hamsters. Nutrients, 16(15), 2472. [Google Scholar]
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