Changes in Udder Surface Temperature and Milk Quality Characteristics in Cows during the Hot Season

Changes in Udder Surface Temperature and Milk Quality Characteristics in Cows during the Hot Season

The aim of this study was to determine the relationships of udder surface temperature (UST) with milk components, and somatic cell count (SCC) in dairy cows during the hot season. The study was carried out with 115 lactating dairy cows (Holstein, Simmental, and Holstein × Simmental) at a private dairy farm in Samsun, Turkey, with monthly visits. The UST was measured from the udder surface before cleaning and milking. At the same time, a portable cell counter and an automatic milk analyzer were used to determine the components and the SCC of the raw milk. The UST values of the cows changed significantly. Increased UST had an adverse effect on milk solids-non-fat (SNF), protein, lactose, and density levels. LogSCC values of cow groups with UST ≤35.0°C, 35.1- 36.0°C, >36.0°C were found to be 4.475±0.0803, 4.774±0.1244, and 4.981±0.1491 respectively. The UST negatively correlated with SNF, protein, lactose, density, and freezing point, but positively correlated with LogSCC. As a result, performing UST measurements before milking may be beneficial to monitor udder health and to obtain high quality milk.

___

  • Atasever S, Erdem H. 2008. Relationships between mastitis and electrical conductivity of raw milk in dairy cows. Journal of Faculty of Agriculture, OMU, 23(2):131-136.
  • Ayasan T, Hızlı H, Yazgan E, Kara U, Gok K. 2011. The effect of somatic cell count on milk urea nitrogen and milk composition. Journal of the Faculty of Veterinary Medicine, Kafkas University, 17(4): 659-662.
  • Aytekin I, Boztepe S. 2014. Somatic Cell Count, Importance and Effect Factors in Dairy Cattle. Turkish Journal of Agriculture - Food Science And Technology, 2(3): 112-121.
  • Barth K. 2000. Basic investigations to evaluate a highly sensitive infrared-thermograph technique to detect udder inflammation in cows. Milchwissenschaft, 55: 607-609.
  • Berry RJ, Kennedy AD, Scott SL, Kyle BL, Schaefer AL. 2003. Daily variation in the udder surface temperature of dairy cows measured by infrared thermography: Potential for mastitis detection. Canadian Journal of Animal Science, 83(4): 687- 693.
  • Bortolami A, Fiore E, Gianesella M, Corro M, Catania S, Morgante M. 2015. Evaluation of the udder health status in subclinical mastitis affected dairy cows through bacteriological culture, somatic cell count and thermographic imaging. Polish Journal of Veterinary Sciences, 18(4): 799-805.
  • Colak A, Polat B, Okumus Z, Kaya M, Yanmaz LE., Hayirli A. 2008. Early Detection of Mastitis Using Infrared Thermography in Dairy Cows. Journal of Dairy Science, 91(11): 4244-4248.
  • Ellis KA, Innocent GT, Mihm M, Cripps P, McLean WG, Howard CV, Grove-White D. 2007. Dairy cow cleanliness and milk quality on organic and conventional farms in the UK. Journal of Dairy Research 74:302-310.
  • Erdem H, Okuyucu I.C. 2019. Influence of hygiene status of cows on somatic cell count and milk components during summer season. Large Animal Review, 25: 7-10.
  • Golzarian MR, Soltanali H, Doosti Irani O, Ebrahimi S H. 2017. Possibility of early detection of bovine mastitis in dairy cows using thermal images processing. Iranian Journal of Applied Animal Science, 7(4): 549-557.
  • Hovinen M, Siivonen J, Taponen S, Hänninen L, Pastell M, Aisla AM, Pyörälä S. 2008. Detection of clinical mastitis with the help of a thermal camera. Journal of Dairy Science, 91(12): 4592-4598.
  • Köster G, Tenhagen BA, Heuwieser W. 2006. Factors associated with high milk test day somatic cell counts in large dairy herds in Brandenburg. I: Housing conditions. Journal of Veterinary Medicine Series A, 53(3): 134-139.
  • Kul E, Erdem H, Atasever S, 2006. Effect of different udder traits on mastitis and somatic cell count in dairy cows. Journal of Faculty of Agriculture, OMU, 21(3): 350-356.
  • Poikalainen V, Praks J, Veermäe I, Kokin E. 2012. Infrared temperature patterns of cow’s body as an indicator for health control at precision cattle farming. Agronomy Research Biosystem Engineering Special, 10(1): 187-194.
  • Polat B, Colak A, Cengiz M, Yanmaz LE, Oral H, Bastan A, Kaya S, Hayirli A. 2010. Sensitivity and specificity of infrared thermography in detection of subclinical mastitis in dairy cows. Journal of Dairy Science, 93 (8): 3525-3532.
  • Porcionato MAF, Canata TF, Deoliviera CL, Dos Santos MV. 2009. Udder thermography of Gyr cows for subclinical mastitis detection. Revista Brasileira de Engenharia de Biossistemas, 3(3): 251-257.
  • Rainard P, Foucras G, Boichard D, Rupp R. 2018. Invited review: low milk somatic cell count and susceptibility to mastitis. Journal of Dairy Science, 101(8): 6703-6714.
  • Rekik B, Ajili N, Belhani H, Gara AB, Rouissi H. 2008. Effect of somatic cell count on milk and protein yields and female fertility in Tunisian Holstein dairy cows. Livestock Science, 116(1-3), 309-317.
  • Sant’Anna AC, Paranhos da Costa MJR. 2011. The relationship between dairy cow hygiene and somatic cell count in milk. Journal of Dairy Science, 94 (8): 3835-3844.
  • Sathiyabarathi M, Jeyakumar S, Manimaran A, Pushpadass HA, Kumaresan A, Lathwal SS, Sivaram M, Das DN, Ramesha KP, Jayaprakash G. 2018. Infrared thermography to monitor body and udder skin surface temperature differences in relation to subclinical and clinical mastitis condition in Karan Fries (Bos taurus× Bos indicus) crossbred cows. Indian Journal of Animal Sciences, 88(6): 694-699.
  • Sathiyabarathi M, Jeyakumar S, Manimaran A, Pushpadass HA, Sivaram M, Ramesha KP, Das, DN, Kataktalware MA, Jayaprakash G, Patbandha TK. 2016. Investigation of body and udder skin surface temperature differentials as an early indicator of mastitis in Holstein Friesian crossbred cows using digital infrared thermography technique. Veterinary World, 9 (12): 1386-1391.
  • Schreiner DA, Ruegg PL. 2003. Relationship between udder and leg hygiene scores and subclinical mastitis. Journal of Dairy Science, 86(11): 3460-3465
  • Schukken YH, Wilson DJ, Welcome F, Garrison-Tikofsky L, Gonzalez RN. 2003. Monitoring udder health and milk quality using somatic cell counts. Veterinary Research, 34(5): 579-596.
  • Sharma N, Singh NK, Bhadwal MS. 2011. Relationship of somatic cell count and mastitis: An overview. Asian- Australasian Journal of Animal Sciences, 24(3): 429-438.
  • Silva RÂBD, Pandorfi H, Almeida GLPD, Montenegro AADA, Silva MVD. 2019. Spatial Dependence of Udder Surface Temperature Variation in Dairy Cows with Healthy Status and Mastitis. Revista Brasileira de Saúde e Produção Animal, 20, 1-15.
  • Simitzis P, Tzanidakis C, Tzamaloukas O, Sossidou E. 2022. Contribution of Precision Livestock Farming Systems to the Improvement of Welfare Status and Productivity of Dairy Animals. Dairy, 3(1), 12-28.
  • Yang C, Li G, Zhang X, Gu X. 2018. Udder skin surface temperature variation pre-and post-milking in dairy cows as determined by infrared thermography. Journal of Dairy Research, 85(2): 201-203.
  • Zaninelli M, Redaelli V, Luzi F, Bronzo V, Mitchell M, Dell’Orto V, Bontempo V, Cattaneo D, Savoini G. 2018. First Evaluation of Infrared Thermography as a Tool for the Monitoring of Udder Health Status in Farms of Dairy Cows. Sensors, 18(3): 862.
Türk Tarım - Gıda Bilim ve Teknoloji dergisi-Cover
  • ISSN: 2148-127X
  • Yayın Aralığı: Aylık
  • Başlangıç: 2013
  • Yayıncı: Turkish Science and Technology Publishing (TURSTEP)
Sayıdaki Diğer Makaleler

Influence of Agronomic biofortification on Maize

Augustine Rajendran, Imayavaramban Veeramani

Effect of Irrigation Regime On Yield and Water Productivity of Maize (Zea Mays) in the Lake Tana Basin, North West Ethiopia

Alebachew Enyew, Mulugeta Worku, Amare Tsige Genet, Dires Tewabe, Atalktie Abebe

The Effect of Use of Microalgae [Chlorella vulgaris Beyerinck (Beijerinck)] in Different Fertilizer Applications on Plant Growth of Garden Rocket (Eruca vesicaria ssp. sativa Mill.)

Büşra Günsan Can, Turgay Kabay, Aynur Sadak Turhan, Suat Şensoy

Phytochemical Profile and Antioxidant Activities of Aqueous Extract of Moringa oleifera (Lam) Collected from DR Congo and Kenya

Valence Bwana Mutwedu, James Mucunu Mbaria, Albert Wafula Nyongesa, Jafred Mulama Kitaa, Jemima Achieng Oduma

Total Antioxidant and Oxidant Status and DPPH Free Radical Activity of Euphorbia eriophora

Falah Saleh Mohammed, Hasan Akgül, Mustafa Sevindik, Muhittin Doğan, Eylem Kına3, İmran Uysal

Media Usage Purposes of Farmers in Selçuklu District of Konya Province

Aysun Yener Ögür, Türkşan Karatekin, Fatma Doğançukuru

Histopathological Research of the Therapeutic Effects of Grape (Vitis vinifera L.) Seeds Extracts on Cadmium-Exposed Carp (Cyprinus carpio L. 1758)

Nuh Korkmaz

Assessment of The Effects of Silicon Application on Growth Parameters and Some Bioactive Components in Hungary vetch (Vicia pannonica Crantz)

Nezahat Turfan

Effect of Gamma Irradiation on the Shelf Life and Quality of Mutton

Md Sadakuzzaman, Md Azharul Islam, Md Anwar Hossain, Muckta Khan, Md Mukhlesur Rahman, Md Abul Hashem

Decontamination Effect of Zinc Oxide Nanoparticles, Rosmarinic Acid and Anatolian Propolis on Foodborne Bacteria

Zeki Aras, Tahsin Onur Kevenk