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Sınırlı ve Serbest Süt İçirmenin Buzağıların Gelişimi ve Sağlığı Üzerine Etkisi

Yıl 2024, Cilt: 21 Sayı: 4, 1033 - 1044, 20.09.2024
https://doi.org/10.33462/jotaf.1404962

Öz

Son yıllarda, hayvan refahı ve hayvan gereksinimleri ile ilgili tüketicilerdeki endişeler, buzağı yetiştirmenin yeni yollarını bulma arzusunu arttırmıştır. Bu nedenle çalışmanın amacı, süt içirme miktarının grup halinde yetiştirilen buzağıların süt içme dönemindeki büyüme, yem tüketimi ve kan değişkenleri üzerindeki etkilerinin incelenmesidir. Çalışmada 5 günlük yaşta 10 Holstein buzağı (her grupta 5 buzağı) kullanılmıştır. Denemenin ilk 19 gününde buzağılar otomatik yemleme robotuna alıştırılmıştır. Buzağılar tekrar tartılarak deneme başı canlı ağırlıkları belirlenmiştir. Buzağılar 60 günlük yaşta sütten kesilmişler ve deneme sonlandırılmıştır. Deneme toplam 36 gün sürmüştür. Birinci grupta bulunan (G1) buzağıların, sabah 2 L ve akşam 2 L olmak üzere toplam 4 L/gün süt ikame yemi tüketmelerine müsaade edilmiştir. İkinci grupta bulunan (G2) buzağıların ise doğal emzirme davranışı olan sabah (05:00-08:00), öğlen (10.00-13:00) ve akşam (16:00-20:00) olmak üzere azami 12 L/gün süt ikame yemi tüketmelerine müsaade edilmiştir. Grupların canlı ağırlıkları, toplam ve günlük canlı ağırlık artışları ve vücut ölçüleri ortalamaları arasında önemli farklılık bulunamamıştır. Ancak G1’de bulunan buzağıların, G2’de bulunan buzağılara nazaran daha fazla buzağı başlangıç yemi tükettikleri belirlenmiştir (P<0.05). Yemden yararlanma oranında G2’de bulunan buzağıların lehine önemli olmayan bir iyileşme elde edilmiştir. Biyokimya kan değişkenlerinden serum glikoz konsantrasyonlarında G2’de bulunan buzağılarda önemli artış elde edilmiştir (P<0.05). Hematolojik kan değişkenlerinden Hemoglobin, hematokrit, ve eritrosit değerleri G2’de bulunan buzağılarda artma eğilimi göstermiştir. Ancak, oksidatif stres, antioksidatif savunma mekanizması ve bağışıklık sistemi üzerine süt içirme miktarının önemli bir etkisi gözlenmemiştir. Çalışmada elde edilen sonuçlar, süt içirme miktarının buzağıların süt içme dönemindeki gelişimleri ve sağlıkları üzerine önemli etkisinin olmadığını göstermiştir.

Proje Numarası

2020-YL1-0107

Kaynakça

  • Anonymous (2011). Calf health. https://www.thecattlesite.com/articles/2612/calf-health (Accessed Date: 29.03.2024).
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  • Borderas, T. F., de Passille, A. M. B. and Rushen, J. (2009). Feeding behaviour of calves fed small or large amounts of milk. Journal of Dairy Science, 92: 2843-2852.
  • Day, M. L., Imakawa, K., Clutter, A. C., Wolfe, P. L., Zalesky, D. D., Nielsen, M. K. and Kinder, L. E. (1987). Suckling behavior of calves with dams varying in milk production. Journal of Animal Science, 65: 1207-1212.
  • de Passille, A. M. B., Borderas, T. F. and Rushen, J. (2011). Weaning age of calves fed a high milk allowance by automated feeders: Effects on feed, water, and energy intake, behavioural signs of hunger, and weight gains. Journal of Dairy Science, 94(3): 1401-1408.
  • de Passille, A. M. B. and Rushen, J. (2006). What components of milk stimulate sucking in calves? Applied Animal Behaviour Science, 101: 243-252.
  • de Paula Vieira, A., Guesdon, V., de Passille, A. M. B., von Keyserlingk, M. A. G. and Weary, D. M. (2008). Behavioural indicators of hunger in dairy calves. Applied Animal Behaviour Science, 109(2-4): 180-189.
  • de Paula, M., Oltramari, C., Silva, J., Gallo, M., Mourao, G. and Bittar, C. (2017). Intensive liquid feeding of dairy calves with a medium crude protein milk replacer: effects on performance, rumen, and blood parameters. Journal of Dairy Science, 100(6): 4448-4456.
  • Dennis, T., Suarez-Mena, F., Hill, T., Quigley, J., Schlotterbeck, R. and Hulbert, L. (2018). Effect of milk replacer feeding rate, age at weaning, and method of reducing milk replacer to weaning on digestion, performance, rumination, and activity in dairy calves to 4 months of age. Journal of Dairy Science, 101(1): 268-278.
  • Dennis, T., Suarez-Mena, F., Hu, W., Hill, T., Quigley, J. and Schlotterbeck, R. (2019). Effects of milk replacer feeding rate and long-term antibiotic inclusion in milk replacer on performance and nutrient digestibility of Holstein dairy calves up to 4 months of age. Journal of Dairy Science, 102(3): 2094-2102.
  • Diaz, M. C., Van Amburgh, M. E., Smith, J. M., Kelsey, J. M. and Hutten, E. L. (2001). Composition of growth of Holstein calves fed milk replacer from birth to 105-kilogram body weight. Journal of Dairy Science, 84: 830-842.
  • Drackley, J. K. (2005). Early growth effect on subsequent health and performance of dairy heifers. In: Calf and Heifer Rearing: Principles of Rearing the Modern Dairy Heifer from Calf to Calving, Eds: Garnsworthy, P. C., Nottingham University Press, Nottingham, UK.
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  • Hill, T., Quigley, J., Bateman, I. I. H., Suarez-Mena, F., Dennis, T. and Schlotterbeck, R. (2016). Effect of milk replacer program on calf performance and digestion of nutrients in dairy calves to 4 months of age. Journal of Dairy Science, 99(10): 8103-8110.
  • Hill, T. M., Bateman, H. G., Aldrich, J. M. and Schlotterbeck, R. L. (2010). Effect of milk replacer program on digestion of nutrients in dairy calves. Journal of Dairy Science, 93(3): 1105-1115.
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The Effects of Restricted and Ad Libitum Milk Feeding on Growth and Health of Calves

Yıl 2024, Cilt: 21 Sayı: 4, 1033 - 1044, 20.09.2024
https://doi.org/10.33462/jotaf.1404962

Öz

In recent years, there has been a growing concern among consumers regarding animal welfare and their requirements, leading to an increased interest in exploring new approaches to calf rearing. Therefore, the aim of this study was to investigate the effects of milk feeding levels on the growth, feed intake, and blood variables of group-raised calves during the suckling period. Ten Holstein calves, 5 in each group, were used in the study when they were five years old. The calves were acclimated to an automated feeder during the initial 19 days of the experiment, and their initial LWs were recorded after weighing them again. The study concluded upon weaning the calves when they were sixty years old, with a total duration of 36 days The calves in the first group (G1) were provided with a total of 4 L/day of milk replacer, divided into 2 L servings in the morning and evening. Conversely, calves in the second group (G2) were allowed a maximum intake of 12 L/day of milk replacer, mimicking the natural sucking behaviour, with feedings in the morning (05:00-08:00), midday (10:00-13:00), and evening (16:00-20:00). Despite no significant differences in the LW, total and daily LW gains, and body measurements averages between of the groups, calves in G1 consumed more starter feed compared to those in G2 (P<0.05). There was a non-significant improvement in feed efficiency in favor of calves in G2. Additionally, significant increases were noted in serum glucose concentrations among the biochemical variables in G2 (P<0.05). Furthermore, hematological blood variables, including haemoglobin, haematocrit, and erythrocyte values, tended to increase in calves in G2. However, there was no significant effect of milk feeding levels observed on oxidative stress, antioxidative defense mechanisms and immune response. In conclusion, the results from this study suggest that the amount of milk feeding does not exert a significant effect on the growth and health of the calves during the milk-feeding period.

Etik Beyan

The study was approved by the Animal Experiments Local Ethics Committee of Isparta University of Applied Sciences with its decision dated 27.05.2021 and numbered 002.

Destekleyen Kurum

Isparta University of Applied Sciences Scientific Research Proejcts Coordination Unit

Proje Numarası

2020-YL1-0107

Teşekkür

We thank to Baran Medikal Ltd (Ankara, Türkiye) for their assistance in the analysis of oxidative stress markers, antioxidative defense mechanism enzymes and immunoglobulins.

Kaynakça

  • Anonymous (2011). Calf health. https://www.thecattlesite.com/articles/2612/calf-health (Accessed Date: 29.03.2024).
  • Anonymous (2016). Buzağı Bakım ve Beslenmesi. https://www.tarimorman.gov.tr/HAYGEM/Belgeler/Hayvancılık/Büyükbaş%20Hayvancılık/2016%20Yılı/Buzağı%20ve%20Beslenmesi.pdf (Accessed Date: 29.03.2024) (In Turkish).
  • AOAC (2005). Official Metehods of Analysis. 18th edn. Association of Official Analytical Chemists; Arlington, VA, USA.
  • Appleby, M. C., Weary, D. M. and Chua B. (2001). Performance and feding behaviour of calves on ad libitum milk from artificial teats. Applied Animal Behaviour Science, 74: 191-201.
  • Bar-Peled, U., Robinzon, B., Maltz, E., Tagari, H., Folman, Y., Bruckental, I., Voet, H., Gacitua, H. and Lehrer A. R. (1997). Increased weight gain and effects on production parameters of Holstein heifer calves that were allowed to suckle from birth to six weeks of age. Journal of Dairy Science, 80: 2523-2528.
  • Bartlett, K. S., McKeith, F. K., VandeHaar, M. J., Dahl, G. E. and Drackley, J. K. (2006). Performance and feeding behavior of calves on ad libitum milk from artificial teats. Applied Animal Behaviour Science, 74: 191-201.
  • Borderas, T. F., de Passille, A. M. B. and Rushen, J. (2009). Feeding behaviour of calves fed small or large amounts of milk. Journal of Dairy Science, 92: 2843-2852.
  • Day, M. L., Imakawa, K., Clutter, A. C., Wolfe, P. L., Zalesky, D. D., Nielsen, M. K. and Kinder, L. E. (1987). Suckling behavior of calves with dams varying in milk production. Journal of Animal Science, 65: 1207-1212.
  • de Passille, A. M. B., Borderas, T. F. and Rushen, J. (2011). Weaning age of calves fed a high milk allowance by automated feeders: Effects on feed, water, and energy intake, behavioural signs of hunger, and weight gains. Journal of Dairy Science, 94(3): 1401-1408.
  • de Passille, A. M. B. and Rushen, J. (2006). What components of milk stimulate sucking in calves? Applied Animal Behaviour Science, 101: 243-252.
  • de Paula Vieira, A., Guesdon, V., de Passille, A. M. B., von Keyserlingk, M. A. G. and Weary, D. M. (2008). Behavioural indicators of hunger in dairy calves. Applied Animal Behaviour Science, 109(2-4): 180-189.
  • de Paula, M., Oltramari, C., Silva, J., Gallo, M., Mourao, G. and Bittar, C. (2017). Intensive liquid feeding of dairy calves with a medium crude protein milk replacer: effects on performance, rumen, and blood parameters. Journal of Dairy Science, 100(6): 4448-4456.
  • Dennis, T., Suarez-Mena, F., Hill, T., Quigley, J., Schlotterbeck, R. and Hulbert, L. (2018). Effect of milk replacer feeding rate, age at weaning, and method of reducing milk replacer to weaning on digestion, performance, rumination, and activity in dairy calves to 4 months of age. Journal of Dairy Science, 101(1): 268-278.
  • Dennis, T., Suarez-Mena, F., Hu, W., Hill, T., Quigley, J. and Schlotterbeck, R. (2019). Effects of milk replacer feeding rate and long-term antibiotic inclusion in milk replacer on performance and nutrient digestibility of Holstein dairy calves up to 4 months of age. Journal of Dairy Science, 102(3): 2094-2102.
  • Diaz, M. C., Van Amburgh, M. E., Smith, J. M., Kelsey, J. M. and Hutten, E. L. (2001). Composition of growth of Holstein calves fed milk replacer from birth to 105-kilogram body weight. Journal of Dairy Science, 84: 830-842.
  • Drackley, J. K. (2005). Early growth effect on subsequent health and performance of dairy heifers. In: Calf and Heifer Rearing: Principles of Rearing the Modern Dairy Heifer from Calf to Calving, Eds: Garnsworthy, P. C., Nottingham University Press, Nottingham, UK.
  • Gelsinger, S., Heinrichs, A. and Jones, C. (2016). A meta-analysis of the effects of preweaned calf nutrition and growth on first-lactation performance. Journal of Dairy Science, 99(8): 6206-6214.
  • Hartel, H., Hepola, H., Seppanen, N., Rauhala, R., Sankari, S., Soveri, T., Saloniemi, H. and Syrjala-Qvist, L. (2002). Pikkuvasikoiden hapanmaitojuotto. Suomen Elainlaakarilehti, 2: 84-89 (In Finnish).
  • Hill, T., Quigley, J., Bateman, I. I. H., Suarez-Mena, F., Dennis, T. and Schlotterbeck, R. (2016). Effect of milk replacer program on calf performance and digestion of nutrients in dairy calves to 4 months of age. Journal of Dairy Science, 99(10): 8103-8110.
  • Hill, T. M., Bateman, H. G., Aldrich, J. M. and Schlotterbeck, R. L. (2010). Effect of milk replacer program on digestion of nutrients in dairy calves. Journal of Dairy Science, 93(3): 1105-1115.
  • Huuskonen, A. and Khalili, H. (2008). Computer-controlled milk replacer feeding strategies for group-reared dairy calves. Livestock Science, 113(2-3): 302-306.
  • Jafari, A., Azarfar, A., Alugongo, G. M., Ghorbani, G. R., Mirzaei, M., Fadayifar, A., Omidi-Mirzaei, H., Cao, Z., Drackley, J. K. and Ghaffari, M. H. (2021). Milk feeding quantity and feeding frequency: effects growth performance, rumen fermentation and blood metabolites of Holstein dairy calves. Italian Journal of Animal Science, 20(1): 336-351.
  • Jasper, J. and Weary, D. M. (2002). Effects of ad libitum milk intake on dairy calves. Journal of Dairy Science, 85: 3054-3058.
  • Jensen, M. B. (2006). Computer-controlled milk feeding of group-housed calves: the effect of milk allowance and weaning type. Journal of Dairy Science ,89(1): 201-206.
  • Kelada, S. N. P., Aylor, D. L., Peck, B. C. E., Ryan, J. F., Tavarez, U., Buus, R. J., Miller, D. R., Chesler, E. J., Threadgill, D. W., Churchill, G. A., Vilhena, F. P. -M. and Collins, F. S. (2012). Genetic analysis of hematological parameters in incipient lines of the collaborative cross. Genes, Genomes, Genetics, 2: 157-165.
  • Khan, M., Weary, D. and Von Keyserlingk, M. (2011). Invited review: Effects of milk ration on solid feed intake, weaning, and performance in dairy heifers. Journal of Dairy Science, 94(3): 1071-1081.
  • Khan, M. A., Lee, H., Lee, W., Kim, H., Ki, K., Hur, T., Suh, G., Kang, S. and Choi, Y. (2007b). Structural growth, rumen development, and metabolic and immune responses of Holstein male calves fed milk through step-down and conventional methods. Journal of Dairy Science, 90(7): 3376-3387.
  • Khan, M. A., Lee, H. J., Lee, W. S., Kim, H. S., Kim, S. B., Ki, K. S., Ha, J. K., Lee, H. G. and Choi, Y. J. (2007a). Pre-and postweaning performance of Holstein female calves fed milk through step-down and conventional methods. Journal of Dairy Science, 90(2): 876-885.
  • Kmicikewycz, A., Da Silva, D., Linn, J. and Litherland, N. (2013). Effects of milk replacer grogram fed 2 or 4 times daily on nutrient intake and calf growth. Journal of Dairy Science, 96(2): 1125-1134.
  • Kozaklı, Ö., Ul Hassan, M. and Ceyhan, A. (2022). The prediction of Brody, Logistic and Von Bertalanffy models by using the Bayesian approach for modeling the growth curves in Holstein calves. Journal of Tekirdag Agricultural Faculty, 19(3): 600-609.
  • MacPherson, J., Berends, H., Leal, L., Cant, J., Martin-Tereso, J. and Steele, M. (2016). Effect of plane of milk replacer intake and age on glucose and insulin kinetics and abomasal emptying in female Holstein Friesian dairy calves fed twice daily. Journal of Dairy Science, 99(10): 8007-8017.
  • MacPherson, J., Meale, S. J., Macmillian, K., Haisan, J., Bench, C. J., Oba, M. and Steele, M. A. (2019). Effects of feeding frequency of an elevated plane of milk replacer and calf age on behaviour, and glucose and insulin kinetics in male Holstein calves. Animal, 13(7): 1385-1393.
  • Mirzaei, M., Dadkhah, N., Baghbanzadeh-Nobari, B., Agha-Tehrani, A., Eshraghi, M., Imani, M., Shiasi-Sardoabi, R. and Ghaffari, M. (2018). Effects of preweaning total plane of milk intake and weaning age on intake, growth performance, and blood metabolites of dairy calves. Journal of Dairy Science, 101(5): 4212-4220.
  • Odde, K. G., Kiracofe, G. H. and Schalles, R. R. (1985). Suckling behavior in range beef calves. Journal of Animal Science, 109: 222-236.
  • Omidi-Mirzaei, H., Khorvash, M., Ghorbani, G., Moshiri, B., Mirzaei, M., Pezeshki, A. and Ghaffari, M. (2015). Effects of the step-up/step-down and step-down milk feeding procedures on the performance, structural growth, and blood metabolites of Holstein dairy calves. Journal of Dairy Science, 98(11): 7975-7981.
  • Orellana Rivas, R., Komori, G., Beihling, V., Marins, T., Bernard, J. and Tao, S. (2020). Effects of milk replacer feding levels on performance and metabolism of preweaned dairy calves during summer. Journal of Dairy Science, 103(1): 313-324.
  • Palmquist, D., Doppenberg, J., Roehring, K. and Kinsey, D. (1992). Glucose and insulin metabolism in ruminating and veal calves fed high and low fat diets. Domestic Animal Endocrinology, 9(3): 233-241.
  • Plumb, D. C. (2005). Plumb’s Veterinary Drug Handbook. 5th Edition. Wiley-Blackwell, Iowa, USA.
  • Quigley, J. D., Hill, T., Dennis, T., Suarez-Mena, F. and Schlotterbeck, R. (2018). Effects of feeding milk replacer at 2 rates with pelleted, low-starch or texturized, high-starch starters on calf performance and digestion. Journal of Dairy Science, 101(7): 5937-5948.
  • Quigley, J. D., Wolfe, T. A. and Elsasser, T. H. (2006). Effects of additional milk replacer feeding on calf health, growth, and selected blood metabolites in calves. Journal of Dairy Science, 89(1): 207-216.
  • Raeth-Knight, M., Chester-Jones, H., Hayes, S., Linn, J., Larson, R., Ziegler, D., Ziegler, B. and Broadwater, N. (2009). Impact of conventional or intensive milk replacer programs on Holstein heifer performance through six months of age and during first lactation. Journal of Dairy Science, 92(2): 799-809.
  • Roland, L., Drillich, M. and Iwersen, M., (2014). Hematology as a diagnostics tool in bovine medicine. Journal of Veterinary Diagnostic Investigation, 26: 592-598.
  • Rosenberger, K., Costa, J., Neave, H., Von Keyserlingk, M. and Weary, D. (2017). The effect of milk allowance on behaviour and weight gains in dairy calves. Journal of Dairy Science, 100(1): 504-512.
  • Saper, C. B., Chou, T. C. and Elmquist, J. K. (2002). The need to feed: homeostatic and hedonic control of eating. Neuron, 36: 199-211.
  • Schaff, C. T., Gruse, J., Maciej, J., Mielenz, M., Wirthgen, E., Hoeflich, A., Schmicke, M., Pfuhl, R., Jawor, P., Stefaniak, T. and Hammon, H. M. (2016). Effects of feeding milk replacer ad libitum or in restricted amounts for the first five weeks of life on the growth, metabolic adaptation, and immune status of newborn calves. PloS One, 11(12): e0168974.
  • Schrama, J. W., Roefs, J. P. A., Gorssen, J., Heetkamp, M. J. W. and Verstegen, M. W. A. (1995). Alternation of heat production in young calves in relation to posture. Journal of Animal Science, 73: 2254-2262.
  • Scoley, G., Ashfield, A., Romero Oiartzun, M., Gordon, A. and Morrison, S. J. (2020). Behavioural and physiological response of individually housed dairy calves to change in milk feding frequency at different ages. Irish Journal of Agriculture and Food Research, 59(1): 70-84.
  • Shamay, A., Werner, D., Moallem, U., Barash, H. and Bruckental, I. (2005). Effect of nursing management and skeletal size at weaning on puberty, skeletal growth rate, and milk production during first lactation of dairy heifers. Journal of Dairy Science, 88: 1460-1469.
  • Silper, B., Lana, A., Carvalho, A., Ferreira, C., Franzoni, A., Lima, J., Saturnino, H., Reis, R. and Coelho, S. (2014). Effects of milk replacer feding strategies on performance, ruminal development, and metabolism of dairy calves. Journal of Dairy Science, 97(2): 1016-1025.
  • Stamey, J., Kanovick, N., Kertz, A. and Drackley, J. (2012). Influence of starter protein content on growth of dairy calves in an enhanced early nutrition program. Journal of Dairy Science, 95(6): 3327-3336.
  • Stunkard, A. (1975). Satiety is a conditioned reflex. Psychological Medicine, 37(5): 383-387.
  • Terre, M., Tejero, C. and Bach, A. (2009). Long-term effects on heifer performance of an enhanced-growth feding programme applied during the preweaning period. Journal of Dairy Science, 76(3): 331-339.
  • TSE (1991). Method of the determination metabolic (converted) energy of animal feeds. Turkish Standard Institution. Standard No: 9610, Ankara, Türkiye.
  • Van Amburgh, M. and Drackley, J. (2005). Current perspectives on the energy and protein requirements of the pre-weaned calf. In: Calf and Heifers Rearing: Principles of Rearing the Modern Dairy Heifers from Calf to Calving. Eds: Garnsworthy, P.C., Nottingham University Press, Nottingham, UK.
  • van Niekerk, J., Fischer-Tlustos, A., Deikun, L., Quigley, J., Dennis, T., Suarez-Mena, F., Hill, T., Schlotterbeck, R., Guan, L. and Steele, M. (2020). Effect of amount of milk replacer fed and the processing of corn in starter on growth performance, nutrient digestibility, and rumen and fecal fibrolytic bacteria of dairy calves. Journal of Dairy Science, 103(3): 2186-2199.
  • Vi, R. B., McLeod, K., Klotz, J. and Heitmann, R. (2004). Rumen development, intestinal growth and hepatic metabolism in the pre- and postweaning ruminant. Journal of Dairy Science, 87: 55-65.
  • Wu, S., Li, X., Chen, X., Zhu, Y. and Yao, J. (2021). Optimizing the growth and immune system of dairy calves by subdividing the pre-weaning period and providing different milk volumes for each stage. Animal Nutrition, 7(4): 1296-1302.
  • Yumru, M., Savaş, H.A., Kalenderoğlu, A., Bulut, M., Çelik, H. and Erel, O. (2009). Oxidative imbalance in bipolar disorder subtypes: a comparative study. Progress in Neuro-Psychopharmacology and Biological Psychiatry, 33 6): 1070-1074.
  • Yüksek, S. and Karaçuhalılar, A. (2024). Defining of some morphological characteristics in order to determine the infrastructure of conservation strategies of indigenous cattle for designing sustainable methods and conservation of biodiversity: Eastern Anatolian Red example reared under ex-situ conditions in Türkiye. Journal of Tekirdağ Agricultural Faculty, 21(1): 233-245.
Toplam 59 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Hayvan Yetiştirme
Bölüm Makaleler
Yazarlar

İbrahim Öztop 0000-0002-4865-5618

Serkan Özkaya 0000-0003-3389-0188

Proje Numarası 2020-YL1-0107
Erken Görünüm Tarihi 12 Eylül 2024
Yayımlanma Tarihi 20 Eylül 2024
Gönderilme Tarihi 14 Aralık 2023
Kabul Tarihi 12 Temmuz 2024
Yayımlandığı Sayı Yıl 2024 Cilt: 21 Sayı: 4

Kaynak Göster

APA Öztop, İ., & Özkaya, S. (2024). The Effects of Restricted and Ad Libitum Milk Feeding on Growth and Health of Calves. Tekirdağ Ziraat Fakültesi Dergisi, 21(4), 1033-1044. https://doi.org/10.33462/jotaf.1404962
AMA Öztop İ, Özkaya S. The Effects of Restricted and Ad Libitum Milk Feeding on Growth and Health of Calves. JOTAF. Eylül 2024;21(4):1033-1044. doi:10.33462/jotaf.1404962
Chicago Öztop, İbrahim, ve Serkan Özkaya. “The Effects of Restricted and Ad Libitum Milk Feeding on Growth and Health of Calves”. Tekirdağ Ziraat Fakültesi Dergisi 21, sy. 4 (Eylül 2024): 1033-44. https://doi.org/10.33462/jotaf.1404962.
EndNote Öztop İ, Özkaya S (01 Eylül 2024) The Effects of Restricted and Ad Libitum Milk Feeding on Growth and Health of Calves. Tekirdağ Ziraat Fakültesi Dergisi 21 4 1033–1044.
IEEE İ. Öztop ve S. Özkaya, “The Effects of Restricted and Ad Libitum Milk Feeding on Growth and Health of Calves”, JOTAF, c. 21, sy. 4, ss. 1033–1044, 2024, doi: 10.33462/jotaf.1404962.
ISNAD Öztop, İbrahim - Özkaya, Serkan. “The Effects of Restricted and Ad Libitum Milk Feeding on Growth and Health of Calves”. Tekirdağ Ziraat Fakültesi Dergisi 21/4 (Eylül 2024), 1033-1044. https://doi.org/10.33462/jotaf.1404962.
JAMA Öztop İ, Özkaya S. The Effects of Restricted and Ad Libitum Milk Feeding on Growth and Health of Calves. JOTAF. 2024;21:1033–1044.
MLA Öztop, İbrahim ve Serkan Özkaya. “The Effects of Restricted and Ad Libitum Milk Feeding on Growth and Health of Calves”. Tekirdağ Ziraat Fakültesi Dergisi, c. 21, sy. 4, 2024, ss. 1033-44, doi:10.33462/jotaf.1404962.
Vancouver Öztop İ, Özkaya S. The Effects of Restricted and Ad Libitum Milk Feeding on Growth and Health of Calves. JOTAF. 2024;21(4):1033-44.