References
[1] A T, S E, P A, Lee JW, W I. The influence of subclinical mastitis on the protein composition and protease activities of raw milk from lactating Thai-crossbred dairy cows. Vet World. 2023;16:1363-8.
[2] Ramuada M, Tyasi TL, Gumede L, Chitura T. A practical guide to diagnosing bovine mastitis: a review. Front Anim Sci. 2024;5:1504873.
[3] [Anonymous]. A review of the subclinical mastitis in cattle with special reference to the new approaches of its diagnosis and control. J Curr Vet Res Online. 2022;4(1):33-46.
[4] Bhattarai A, Kaphle K, Adhikari P. Bovine sub-clinical mastitis in Nepal: sustainable management strategy. Int J Food Sci Agric. 2020;4(1). Available from:
https://www.hillpublisher.com/ArticleDetails/279
[5] Sah K, Karki P, Shrestha RD, et al. MILK Symposium review: Improving control of mastitis in dairy animals in Nepal. J Dairy Sci. 2020;103(11):9740-7.
[6] Bradley AJ. Bovine mastitis: an evolving disease. Vet J. 2002;164(2):116-28.
[7] [Anonymous]. Indicators of inflammation in the diagnosis of mastitis. PubMed [Internet]. Available from:
https://pubmed.ncbi.nlm.nih.gov/14556695/
[8] Shrestha A, Bhattarai RK, Luitel H, et al. Prevalence of methicillin-resistant Staphylococcus aureus and pattern of antimicrobial resistance in mastitis milk of cattle in Chitwan, Nepal. BMC Vet Res. 2021;17:239.
[9] [Anonymous]. Advances in diagnostic approaches and therapeutic management in bovine mastitis. PMC [Internet]. Available from:
https://pmc.ncbi.nlm.nih.gov/articles/PMC10384116/
[10] [Anonymous]. Prevalence of bovine subclinical mastitis and isolation of its major causes in Bishoftu Town, Ethiopia. BMC Res Notes [Internet]. Available from: https://bmcresnotes.biomedcentral.com/articles/10.1186/s13104-017-3100-0
[11] Cheng WN, Han SG. Bovine mastitis: risk factors, therapeutic strategies, and alternative treatments - A review. Asian-Australas J Anim Sci. 2020;33(11):1699-713.
[12] [Anonymous]. Biofilm research in bovine mastitis. Front Vet Sci [Internet]. Available from:
https://www.frontiersin.org/journals/veterinary-science/articles/10.3389/fvets.2021.656810/full
[13] Stanek P, Żółkiewski P, Januś E. A review on mastitis in dairy cows research: current status and future perspectives. Agriculture. 2024;14(8):1292.
[14] Kour S, Sharma N, N B, et al. Advances in diagnostic approaches and therapeutic management in bovine mastitis. Vet Sci. 2023;10(7):449.
[15] Burton E, Lalande A. Module 12.2: Detecting subclinical mastitis. Clin Vet Diagn Lab [Internet]. Available from:
https://pressbooks.umn.edu/cvdl/chapter/module-12-2-california-mastitis-test-cmt/
[16] [Anonymous]. Correlation between some direct and indirect tests for screen detection of subclinical mastitis [Internet]. Available from:
http://www.ifrj.upm.edu.my/21%20(03)%202014/59%20IFRJ%2021%20(03)%202014%20Abd%20El%20648.pdf
[17] Bajracharya AM, Shrestha A, Shrestha A, et al. Subclinical mastitis and antibiotic resistance in dairy cows, Bharatpur, Nepal. Jana Adarsha Res J. 2025;2(1):45-50.
[18] Kerro Dego O, Vidlund J. Staphylococcal mastitis in dairy cows. Front Vet Sci [Internet]. Available from:
https://www.frontiersin.org/journals/veterinary-science/articles/10.3389/fvets.2024.1356259/full
[19] Dhakal I, Nagahata H. Evaluation of mastitis related measures & their applications to classify buffalo milk in Chitwan, Nepal. J Agric Sci Technol A. 2018;8.
[20] Fonseca M, Kurban D, Roy JP, et al. Usefulness of differential somatic cell count for udder health monitoring. J Dairy Sci. 2024 [Internet]. Available from:
https://www.journalofdairyscience.org/article/S0022-0302(24)01261-X/fulltext
[21] Burton E, Lalande A. Module 12.3: Individual cow mastitis testing. Clin Vet Diagn Lab [Internet]. Available from:
https://pressbooks.umn.edu/cvdl/chapter/module-12-3-individual-cow-mastitis-testing/
[22] Khanal T, Pandit A. Assessment of sub-clinical mastitis and its associated risk factors in dairy livestock of Lamjung, Nepal. Int J Infect Microbiol. 2013;2(2):49-54.
[23] Koskinen MT, Holopainen J, Pyörälä S, et al. Analytical specificity and sensitivity of a real-time polymerase chain reaction assay for identification of bovine mastitis pathogens. J Dairy Sci. 2009 [Internet]. Available from:
https://www.journalofdairyscience.org/article/S0022-0302(09)70403-5/fulltext
[24] Kharel M, Timsina KP, Adhikari SP, et al. Does mastitis cause economic loss in dairy cattle in Nepal? Nepal Agric Res J. 2023;15(1):55-65.
[25] [Anonymous]. Study of bacterial mastitis in dairy cattle of Pokhara Valley, Kaski Nepal. Res J Anim Vet Fish Sci [Internet]. Available from:
https://www.isca.me/AVFS/Archive/v11/i2/1.ISCA-RJAVFS-2023-004.php
[26] [Anonymous]. Prevalence and risk factors for multidrug-resistant Escherichia coli isolated from subclinical mastitis in the western Chitwan region of Nepal. PubMed [Internet]. Available from:
https://pubmed.ncbi.nlm.nih.gov/33838890/
[27] Chetri DK, Devkota NR, Basnet HB, Karki DB. Relationship of udder, flank and lower leg hygiene scores with elevated somatic cell count and prevalence of subclinical mastitis in dairy cow. Adv Res Rev Bull. [Internet]. Available from:
https://journalarrb.com/index.php/ARRB/article/view/2106
[28] [Anonymous]. Production effects related to mastitis and mastitis economics in dairy cattle herds. PubMed [Internet]. Available from:
https://pubmed.ncbi.nlm.nih.gov/14556691/
[29] [Anonymous]. Effect of milking vacuum level and overmilking on cows' teat characteristics [Internet]. Available from:
https://www.researchgate.net/publication/270703034_Effect_of_milking_vacuum_level_and_overmilking_on_cows'_teat_characteristics
[30] Sah K, Karki P, Shrestha R, et al. Improving control of mastitis in dairy cattle in Nepal. Int J Dairy Sci. 2020;9740-7.
[31] Regmi B, Shah MK, Pande KR. Prevalence and identification of sub-clinical mastitis in the commercial cattle of Rupandehi District, Nepal. Nepal Vet J. 2023;94-100.
[32] [Anonymous]. The effect of selective dry cow treatment on new intramammary infections. PubMed [Internet]. Available from:
https://pubmed.ncbi.nlm.nih.gov/11860103/