China Dairy ›› 2021, Vol. 0 ›› Issue (10): 40-45.doi: 10.12377/1671-4393.21.10.09

• INVITED REVIEW • Previous Articles     Next Articles

Advances in Etiology of Calf Dyspepsia

JIANG Renjiao1, SUN Fukui2, JIA Yonghong3, ZHAO Ning4, DONG Qiang1,*   

  1. 1College of Veterinary Medicine,Northwest A&F University, Yangling Shaanxi 712100;
    2Animal Diseases Control & Prevention Centre of Baishui county, Baishui Shaanxi 715600;
    3Shaanxi Animal Husbandry Industry Experimental Demonstration Centre,Jingyang Shaanxi 713700;
    4Animal Husbandry Development Centre of Linqu county, Linqu Shandong 262600
  • Online:2021-10-25 Published:2021-12-03

Abstract: Calf dyspepsia,also known as indigestive diarrhea,is a general term for a disorder of gastrointestinal digestive function with diarrhea within 15 days. At the beginning of the disease,it was mild form dyspepsia. If it was not cured in time,it was developed into toxic form dyspepsia with water stool. The prevention against etiology is the key to effective prevention and control of dyspepsia. This review starts from the mechanism of dyspepsia,connecting cow feeding management,calf feeding management,feeding environment hygiene and stress together to explain the reasons for dyspepsia. The importance of cow management during the dry period, colostrum management,environmental management,and prevention and control stress was emphasized.

Key words: calf, dyspepsia, diarrhea, etiolgy

[1] Feeding Low Protein Diets to Dairy Cows[EB/OL].https://extension.psu.edu/feeding-low-protein-diets-to-dairy-cows, 2016-05-05.
[2] Grant D, Steve E, Vickie C. Weak Calf Syndrome in Beef Cattle Herds. https://store.extension.iastate.edu/Product/Weak-Calf-Syndrome-in-Beef-Cattle-Herds[EB/OL], 2014-09-unknow.
[3] Nektarios G, Evanthia P, Nikolaos P, et al.Abortions in three beef cattle herds attributed to selenium deficiency[J]. Pakistan Veterinary Journal,2016,36(2):145-148.
[4] Godden S M,Lombard J E, Woolums A R.Colostrum management for dairy Calves[J]. The Veterinary Clinics of North America-Food Animal Practice, 2019,35(3):535-556.
[5] Overton T R, Waldron M R.Nutritional management of transition dairy cows:strategies to optimize metabolic health[J]. Journal of Dairy Science,2004,87(supp-S):E105-E119.
[6] Cobirka M,Tancin V,Slama P.Epidemiology and classification of mastitis[J]. Animals-Basel,2020,10(12): 2212.
[7] Martins L,Barcelos M M,Cue R I,et al.Chronic subclinical mastitis reduces milk and components yield at the cow level[J]. Journal of Dairy Research,2020,87(3):298-305.
[8] Djokovic R,Ilic Z,Kurcubic V,et al.Diagnosis of subclinical ketosis in dairy cows[J]. Biotechnology in Animal Husbandry, 2019,35(2):111-125.
[9] 肖定汉,李兰华,孙莹,等.初乳中酮体、白细胞数量变化与初生犊牛腹泻的关系[J].畜牧与兽医,1987(6):245-247.
[10] Duffield T F,Lissemore K D,McBride B W,et al. Impact of hyperketonemia in early lactation dairy cows on health and production[J]. Journal of Dairy Science,2009,92(2): 571-80.
[11] Ortega B A,Cotty J.Influence of Wounding and Temperature on Resistance of Maize Landraces From Mexico to Aflatoxin Contamination[J]. Frontiers in Plant Science,2020,11: 572264.
[12] Oliver J P,Gooch C A, Lansing S,et al.Invited review:fate of antibiotic residues,antibiotic-resistant bacteria,and antibiotic resistance genes in US dairy manure management systems[J]. Journal of Dairy Science,2020,103(2):1051-1071.
[13] Penati M,Sala G,Biscarini F,et al.Feeding pre-weaned calves with waste milk containing antibiotic residues is related to a higher incidence of diarrhea and alterations in the fecal microbiota[J]. Frontiers in Veterinary Science, 2021,8:650150.
[14] Heinrichs A J,Jones C M,Erickson PS,et al.Symposium review:colostrum management and calf nutrition for profitable and sustainable dairy farms[J]. Journal of Dairy Science,2020,103(6):5694-5699.
[15] Calf Nutrition. https://dairy-cattle.extension.org/raising-dairy-replacementscalf-nutrition/[EB/OL],2019-08-16.
[16] Donna M,Amaral P,Patty B,et al. Feeding and managing baby calves from birth to 3 months of age. https://beef-cattle.extension.org/feeding-and-managing-baby-calves-from-birth-to-3-months-of-age/[EB/OL],2019-09-03.
[17] Guzman C E,Wood J L,Egidi E,et al.A pioneer calf foetus microbiome[J]. Scientific Reports,2020,10(1):17712.
[18] Malmuthuge N,Liang G,Griebel P J,et al.Taxonomic and functional compositions of the small intestinal microbiome in neonatal calves provide a framework for understanding early life gut health[J]. Applied and Environmental Microbiology,2019,85(6):e02534-18.
[19] Kertz A F,Hill M, Quigley J D,et al.A 100-year review:calf nutrition and management[J]. Journal of Dairy Science, 2017,100(12):10151-10172.
[20] Creutzinger K,Pempek J,Habing G, et al.Perspectives on the management of surplus dairy calves in the united states and canada[J]. Frontiers in Veterinary Science, 2021,8:661453.
[21] Björkman C,von Brömssen C,Troell K,et al. Disinfection with hydrated lime may help manage cryptosporidiosis in calves[J]. Veterinary Parasitology,2018,264:58-63.
[22] Nordlund K V, Halbach C E.Calf barn design to optimize health and ease of management[J]. The Veterinary Clinics Of North America-Food Animal Practice,2019,35(1): 29-45.
[23] Whalin L,Weary D M,von Keyserlingk M A G. Understanding behavioural development of calves in natural settings to inform calf management[J]. Animals-Basel,2021,11(8):2446.
[1] RUAN Jixiang, LIU Wenxiao, JIANG Bo, XU Jian, LI Yongqing, CHENG Jing. Pathogens Detection and Analysis of Calf Diarrhea in a Large-scale Dairy Farm [J]. China Dairy, 2021, 0(9): 97-101.
[2] WU Heyun, XIE Lingna, ZHENG Xi. Rsearch on the Method to Increase the Daily Gain of Calves [J]. China Dairy, 2021, 0(8): 52-55.
[3] WANG Chenyu, SONG Jie, CAO Mengyuan, CHEN Mingjie, WEI Yong, QI Yayin. Epidemiological Investigation and Analysis of Prevention and Control Measures of BVD in Some Large-Scale Dairy Farms in Xinjiang [J]. China Dairy, 2021, 0(8): 96-100.
[4] LIU Guosuo, QI Yanrong, TIAN Xue. Epidemic, Prevention,Control and Purification of Bovine Viral Diarrhea in Some large-Scale Dairy Farms in Ningxia [J]. China Dairy, 2021, 0(5): 47-50.
[5] YANG Xu. History,Present and Future of Calf Pneumonia [J]. China Dairy, 2021, 0(10): 22-25.
[6] CHEN Xingxing, ZHOU ChunYuan, ZHAO XinYa, TIAN YuJia, ZHANG Xuewei. Critical Points of Calf Welfare and its Significance to Production [J]. China Dairy, 2021, 0(10): 26-30.
[7] YANG Xiya, XIE Lei, ZHAO Yongpan, Gou Qi, DONG Qiang. Causes,Effects and Evaluation of Weaning Stress in Calves [J]. China Dairy, 2021, 0(10): 31-34.
[8] QIAN Yinghong, ZHANG Xingfu, ZHAO Junli, JI Penghua, ZHAO Jingdi, LV You, YANG Yanyan. Overview on the Prevalence of Calf Pathogenic Diarrhea and Control [J]. China Dairy, 2021, 0(10): 35-39.
[9] WANG Lihua, XU Hongjian, ZHANG Quanyu, ZHANG Chengrui, ZHANG Yonggen. Effects of Different Doses of 25-hydroxyvitamin D3 on Blood Biochemical Indices,Antioxidant Capacity and Immune Function of Pre-weaning Calves [J]. China Dairy, 2021, 0(10): 55-60.
[10] GUO Sifan, CAO Jie. Effects of Astragalus Polysaccharide Combined with Yinhuang Soluble Powder on Immunity and Diseases in Neonatal Calves [J]. China Dairy, 2021, 0(10): 61-66.
[11] WANG Chenyu, HU Xinyun, WEI Yong, CHEN Jie, CAO Mengyuan, CHEN Mingjie, QI Yayin. Investigation on the Etiology of Calf Diarrhea in a Large-scale Commercial Farm in Xinjiang [J]. China Dairy, 2021, 0(10): 67-71.
[12] ZHOU Bowen, QIU Pubin, HAO Dongsheng, SUN Shouqiang, CHANG Qiang, MA Haibao, LI Chunlai, JI Cuiying. Case Analysis in Different Feeding Models in Calves [J]. China Dairy, 2021, 0(10): 72-77.
[13] ZHANG Hailiang, NING Jingyang, WANG Ao, TIAN Jia, ZHANG Weixin, WEN Wan, WANG Yachun. A Study on Health Problem and Culling in Holstein Replacement Cattle in Ningxia Area [J]. China Dairy, 2021, 0(10): 86-91.
[14] ZHANG Jie, LI Jingbin, LI Lingfei, JI Cuiying. Feeding Management of Suckling Calves under Automatic Feeding Mode [J]. China Dairy, 2021, 0(10): 92-96.
[15] CHEN Changzhi, WANG Zanjiang. Calf Comfort Management [J]. China Dairy, 2021, 0(10): 97-100.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!