Sığırlarda Topallık, Etiyoloji ve Lokomosyon Skorlamaları
Özet
Referanslar
Urban-Chmiel R, Mudron P, Abramowicz B, et al. Lameness in Cattle—Etiopathogenesis, Prevention and Treatment. Animals, 2024;14:1836. DOI: 10.3390/ani14121836
Erickson S, Jelenski M, Booker C, et al. A review of foot related lameness in feedlot cattle. Canadian Journal of Animal Science, 2024; 00: 1–16. https://dx.doi.org/10.1139/cjas-2024-0047.
İzci C, Çuhadar Erdal F. Süt Sığırlarında Topallık: Verimlilik ve Çiftlik Ekonomisine Etkisi. Bursa Uludag Üniversitesi Ziraat Fakültesi Dergisi, 2021;35(2):451-466.
Mostert PF, van Middelaar CE, de Boer IJM, et al. The impact of foot lesions in dairy cows on greenhouse gas emissions of milk production. Agricultural Systems. 2018; 167:206-212. DOI: 10.1016/j.agsy.2018.09.006.
Mason WA, Müller KR, Laven LJ, et al. Farm-level risk factors and treatment protocols for lameness in New Zealand dairy cattle. New Zealand Veterinary Journal, 72;4: 171-182, DOI: 10.1080/00480169.2024.2345257
Akköse M, İzci C. İnek Konforunun Topallıklar Üzerine Etkisi ve Konforun Değerlendirilmesi. Hayvansal Üretim, 2017 58(1): 33-45.
Belge A, Bakır B, Gönenci R, et al. Subclinical Laminitis in Dairy Cattle: 205 Selected Cases. Turkish Journal of Veterinary and Animal Sciences, 2005; 29(1): 9-15.
Yaylak E. Süt Sığırlarında Topallık ve Topallığın Bazı Özelliklere Etkisi. Hayvansal Üretim, 2008;49(1): 47-56.
Yaylak E, Akbaş Y, Kaya I, et al. The Effects of Several Cow and Herd Level Factors on Lameness in Holstein Cows Reared in Izmir Province of Turkey. Journal of Animal and Veterinary Advances, 2010; 9(21):2714-2722.
İzci C, Sulu K. Süt Sığırlarında Tırnak Kesimi: Hayvan Refahı ve Verimlilik Üzerine Etkileri. Hayvansal Üretim, 2022; 63(2): 162-169.
Whay HR, Shearer JK. The impact of lameness on welfare of the dairy cow. Veterinary Clinics of North America: Food Animal Practice, 2017; 33(2): 153e164
O’Callaghan KA, Cripps PJ, Downham DY, et al. Subjective and Objective Assessment of Pain and Discomfort Due to Lameness in Dairy Cattle. Animal Welfare, 2003;12(4):605-610. DOI:10.1017/S0962728600026257
Cardoso AS, Whitby A, Green MJ, et al.ş Identification of Predictive Biomarkers of Lameness in Transition Dairy Cows. Animals, 2024, 14, 2030. https://doi.org/10.3390/ani14142030
Van Amstel SR, Shearer J. Manual for Treatment and Control of Lameness in Cattle. Blackwell Publishing: IOWA, USA; 2006, p.1-16
Archer S, Bell N, Huxley J. Lameness in UK Dairy Cows: A Review of the Current Status. In Practice, 2010; 32:492–504. https://doi.org/10.1136/inp.c6672
Swartz D, Shepley E, Parker Gaddis K, et al. Descriptive evaluation of a camera-based dairy cattle lameness detection technology. Journal of Dairy Science, 2024; 107(11): 9847-9861. https://doi.org/10.3168/jds.2024-24851.
Görgül OS. Süt sığırlarında ayak hastalıkları. Hayvancılık Serisi: 7. Yetiştirici el kitabı. Bursa Sütaş, Süt Hayvancılığı Eğitim Merkezi Yayınları. 2004.
Solano L, Barkema HW, Pajor EA, et al. Prevalence of lameness and associated risk factors in Canadian Holstein-Friesian cows housed in freestall barns. Journal of Dairy Science, 2015;98(10):6978-91. DOI: 10.3168/jds.2015-9652.
Garvey M. Lameness in Dairy Cow Herds: Disease Aetiology, Prevention and Management. Dairy, 2022;3:199-210. https://doi.org/10.3390/dairy3010016
Kofler J, Hoefler M, Hartinger T, et al. Effects of High Concentrate-Induced Subacute Ruminal Acidosis Severity on Claw Health in First-Lactation Holstein Cows. Animals, 2023; 13: 1418. https://doi.org/10.3390/ani13081418
Vanegas J, Overton M, Berry SL, et al. Effect of Rubber Flooring on Claw Health in Lactating Dairy Cows Housed in Free-Stall Barns. Journal of Dairy Science, 2006; 89:4251–4258.
Akköse M, İzci C. Süt ineklerinde yatma süresinin topallıklara etkisi ve yatma süresini etkileyen faktörler. Lalahan Hayvancılık Araştırma Enstitüsü Dergisi, 2017; 57(1):44-51.
Witkowska D, Poniewaz ˙A. The Effect of Housing System on Disease Prevalence and Productive Lifespan of Dairy Herds—A Case Study. Animals, 2022;12:1610. https://doi.org/10.3390/ani12131610.
Beaver A, Weary DM, Keyserlingk AG. Invited review: The welfare of dairy cattle housed in tiestalls compared to less restrictive housing types: A systematic review. Journal of Dairy Science, 2021; 104: 9383–9417. https://doi.org/10.3168/jds.2020-19609.
Popescu S, Borda C, Diugan EA, et al. The effect of the housing system on the welfare quality of dairy cows. Italian Journal of Animal Science, 2014;13:2940. https://doi.org/10.4081/ijas.2014.2940.
van Eerdenburg FJCM, Ruud LE. Design of Free Stalls for Dairy Herds: A Review. Ruminants. 2021; 1(1):1-22. https://doi.org/10.3390/ruminants1010001
Gard JA, Taylor DR, Wilhite DR, et al. Effect of exercise and environmental terrain on development of the digital cushion and bony structures of the bovine foot. American Journal of Veterinary Research, 2015;76: 246–252. DOI: 10.2460/ajvr.76.3.246.
Olmos G, Boyle L, Hanlon A, et al. Hoof disorders, locomotion ability and lying times of cubicle-housed compared to pasture-based dairy cows. Livestock Science, 2009;125(2-3):199–207. https://doi.org/10.1016/j.livsci.2009.04.009
Alawneh JI, Stevenson MA, Williamson NB, et al. The effects of live weight loss and milk production on the risk of lameness in a seasonally calving, pasture fed dairy herd in New Zealand. Preventive Veterinary Medicine, 2014; 113:72–79. DOI: 10.1016/j.prevetmed.2013.10.010.
Ranjbar S, Rabiee AR, Gunn A, et al. Identifying risk factors associated with lameness in pasture-based dairy herds. Journal of Dairy Science, 20169; 9: 7495–7505. DOI: 10.3168/jds.2016-11142
Han MC, Sağlıyan A, Polat. Sığırlarda Ahır Zemin Tiplerinin Ayak Hastalıkları ve Tırnak Deformasyonları Üzerine Etkilerinin Araştırılması. Harran Üniversitesi Veteriner Fakültesi Dergisi, 2017; 6 (1): 19-24.
Magrin L, Contiero B, Cozzi G, et al. Deviation of Behavioural and Productive Parameters in Dairy Cows Due to a Lameness Event: A Synthesis of Reviews. Italian Journal of Animal Science, 2023;22:739–748. https://doi.org/10.1080/1828051X.2023.2241870.
Leonard FC, O’Connell JM, O’Farrell KJ. Effect of overcrowding on claw health in first-calved Friesian heifers. British Veterinary Journal, 1996;152:459–472.
Tucker, CB, Jensen MB, ∙ de Passillé AM, et al. Invited review: Lying time and the welfare of dairy cows. Journal of Dairy Science, 2021;104(1): 20-46. https://doi.org/10.3168/jds.2019-18074.
Cook NB, Rieman J, Gomez A, Burgi K. Observations on the design and use of footbaths for the control of infectious hoof disease in dairy cattle. The Veterinary Journal, 2012;193(3):669-673. DOI: 10.1016/j.tvjl.2012.06.051.
Prastiwi A, Okumuş Z, Hayırlı A, et al. Effectiveness of Copper Sulfate Solutions in Footbaths in Dairy Cattle. Atatürk University Jornal of Veterinary Science, 2019; 14(3): 238-245. DOI: 10.17094/ataunivbd.538342.
Solano L, Barkema HW, Pickel C, et al. Effectiveness of a standardized footbath protocol for prevention of digital dermatitis. Jornal of Veterinary Science, 2017;100:1295–1307. https://doi.org/10.3168/jds.2016-11464
Blowey RW. Cattle Lameness and Hoof Care. 3rd ed. Sheffield, UK: 5m Publishing; 2015
Dahlvik M, Koç G, Paakala E. The effects of hoof health and hoof trimming on farm profitability. Livestock Science, 2024;285:105497.
Manske T, Hultgren J, Bergsten C. The effect of claw trimming on the hoof health of Swedish dairy cattle. Preventive Veterinary Medicine, 2002; 54: 113–129.
Mahendran SA, Huxley JN, Chang YM, et al. Randomised controlled trial to evaluate the effect of foot trimming before and after first calving on subsequent lameness episodes and productivity in dairy heifers. The Veterinary Journal, 2017; 220:105-110. DOI: 10.1016/j.tvjl.2017.01.011.
Sadiq MB, Ramanoon SZ, Shaik Mossadeq WMM, et al. Preventive Hoof Trimming and Animal-Based Welfare Measures Influence the Time to First Lameness Event and Hoof Lesion Prevalence in Dairy Cows. Frontiers in Veterinary Science, 2021; 8:631844. DOI: 10.3389/fvets.2021.631844.
Lean IJ, Westwood CT, Golder HM, et al. Impact of nutrition on lameness and claw health in cattle. Livestock Science, 2013;156(1-3):71-87.
Langova L, Novotna I, Nemcova P, et al. Impact of Nutrients on the Hoof Health in Cattle. Animals (Basel), 2020;10(10):1824. DOI: 10.3390/ani10101824.
Sanders AH, Shearer JK, De Vries A. Seasonal incidence of lameness and risk factors associated with thin soles, white line disease, ulcers, and sole punctures in dairy cattle. Journal of Dairy Science, 2009; 92: 3165–3174. DOI: 10.3168/jds.2008-1799
Refaai W, Van Aert M, Abd El-Aal AM, et al. Infectious diseases causing lameness in cattle with a main emphasis on digital dermatitis (Mortellaro disease). Livestock Science, 2013;156:53–63.
Browne N, Hudson CD, Crossley RE, et al. Cow- and herd-level risk factors for lameness in partly housed pasture-based dairy cows. Journal of Dairy Science, 2022;105:1418–1431.
Palmer M, O’Connell N. Digital Dermatitis in Dairy Cows: A Review of Risk Factors and Potential Sources of Between-Animal Variation in Susceptibility. Animals, 2015; 5: 512–535.
Bicalho RC, Machado VS, Caixeta LS. Lameness in dairy cattle: A debilitating disease or a disease of debilitated cattle? A cross-sectional study of lameness prevalence and thickness of the digital cushion. Journal of Dairy Science, 2009;92(7):3175-3184. DOI: 10.3168/jds.2008-1827.
Espejo LA, Endres MI, Salfer JA. Prevalence of lameness in high-producing holstein cows housed in freestall barns in Minnesota. Journal of Dairy Science, 2006;89(8):3052-3058. DOI: 10.3168/jds.S0022-0302(06)72579-6.
Foditsch C, Oikonomou G, Machado VS, et al. Lameness prevalence and risk factors in large dairy farms in upstate New York. Model development for the prediction of claw horn disruption lesions. PLoS ONE, 2016;11: e0146718.
Gardenier J, Underwood J, Weary DM, et al. Pairwise comparison locomotion scoring for dairy cattle. Journal of Dairy Science, 2021;104(5):6185-6193. DOI: 10.3168/jds.2020-19356.
Werema CW, Laven L, Mueller K, et al. Evaluating Alternatives to Locomotion Scoring for Lameness Detection in Pasture-Based Dairy Cows in New Zealand: Infra-Red Thermography. Animals, 2021;11:3473. https:// doi.org/10.3390/ani11123473
Thomas HJ, Remnant JG, Bollard NJ, et al. Recovery of chronically lame dairy cows following treatment for claw horn lesions: a randomised controlled trial. Veterinary Record, 2016 178(5):116. DOI: 10.1136/vr.103394
Alsaaod M, Schaefer AL, Büscher W, et al. The Role of Infrared Thermography as a Non-Invasive Tool for the Detection of Lameness in Cattle. Sensors (Basel), 2015;15(6):14513-14525. DOI: 10.3390/s150614513.
Nejati A, Bradtmueller A, Shepley E, et al. Technology applications in bovine gait analysis: A scoping review. PLoS One, 2023;18(1):e0266287. DOI: 10.1371/journal.pone.0266287.
Schlageter-Tello A, Bokkers EA, Koerkamp PWG, et al. Relation between observed locomotion traits and locomotion score in dairy cows. Journal of Dairy Science, 2015;98(12):8623-3863. DOI: 10.3168/jds.2014-9059.
van Hertem T, Parmet Y, Steensels M, et al. The effect of routine hoof trimming on locomotion score, ruminating time, activity, and milk yield of dairy cows. Journal of Dairy Science, 2014 97(8):4852-4863. https://doi.org/10.3168/jds.2013-7576.
Schlageter-Tello A, Bokkers EAM, Koerkamp PWG, et al. Manual and automatic locomotion scoring systems in dairy cows: A review. Preventive Veterinary Medicine, 2014; 116:12–25.
Referanslar
Urban-Chmiel R, Mudron P, Abramowicz B, et al. Lameness in Cattle—Etiopathogenesis, Prevention and Treatment. Animals, 2024;14:1836. DOI: 10.3390/ani14121836
Erickson S, Jelenski M, Booker C, et al. A review of foot related lameness in feedlot cattle. Canadian Journal of Animal Science, 2024; 00: 1–16. https://dx.doi.org/10.1139/cjas-2024-0047.
İzci C, Çuhadar Erdal F. Süt Sığırlarında Topallık: Verimlilik ve Çiftlik Ekonomisine Etkisi. Bursa Uludag Üniversitesi Ziraat Fakültesi Dergisi, 2021;35(2):451-466.
Mostert PF, van Middelaar CE, de Boer IJM, et al. The impact of foot lesions in dairy cows on greenhouse gas emissions of milk production. Agricultural Systems. 2018; 167:206-212. DOI: 10.1016/j.agsy.2018.09.006.
Mason WA, Müller KR, Laven LJ, et al. Farm-level risk factors and treatment protocols for lameness in New Zealand dairy cattle. New Zealand Veterinary Journal, 72;4: 171-182, DOI: 10.1080/00480169.2024.2345257
Akköse M, İzci C. İnek Konforunun Topallıklar Üzerine Etkisi ve Konforun Değerlendirilmesi. Hayvansal Üretim, 2017 58(1): 33-45.
Belge A, Bakır B, Gönenci R, et al. Subclinical Laminitis in Dairy Cattle: 205 Selected Cases. Turkish Journal of Veterinary and Animal Sciences, 2005; 29(1): 9-15.
Yaylak E. Süt Sığırlarında Topallık ve Topallığın Bazı Özelliklere Etkisi. Hayvansal Üretim, 2008;49(1): 47-56.
Yaylak E, Akbaş Y, Kaya I, et al. The Effects of Several Cow and Herd Level Factors on Lameness in Holstein Cows Reared in Izmir Province of Turkey. Journal of Animal and Veterinary Advances, 2010; 9(21):2714-2722.
İzci C, Sulu K. Süt Sığırlarında Tırnak Kesimi: Hayvan Refahı ve Verimlilik Üzerine Etkileri. Hayvansal Üretim, 2022; 63(2): 162-169.
Whay HR, Shearer JK. The impact of lameness on welfare of the dairy cow. Veterinary Clinics of North America: Food Animal Practice, 2017; 33(2): 153e164
O’Callaghan KA, Cripps PJ, Downham DY, et al. Subjective and Objective Assessment of Pain and Discomfort Due to Lameness in Dairy Cattle. Animal Welfare, 2003;12(4):605-610. DOI:10.1017/S0962728600026257
Cardoso AS, Whitby A, Green MJ, et al.ş Identification of Predictive Biomarkers of Lameness in Transition Dairy Cows. Animals, 2024, 14, 2030. https://doi.org/10.3390/ani14142030
Van Amstel SR, Shearer J. Manual for Treatment and Control of Lameness in Cattle. Blackwell Publishing: IOWA, USA; 2006, p.1-16
Archer S, Bell N, Huxley J. Lameness in UK Dairy Cows: A Review of the Current Status. In Practice, 2010; 32:492–504. https://doi.org/10.1136/inp.c6672
Swartz D, Shepley E, Parker Gaddis K, et al. Descriptive evaluation of a camera-based dairy cattle lameness detection technology. Journal of Dairy Science, 2024; 107(11): 9847-9861. https://doi.org/10.3168/jds.2024-24851.
Görgül OS. Süt sığırlarında ayak hastalıkları. Hayvancılık Serisi: 7. Yetiştirici el kitabı. Bursa Sütaş, Süt Hayvancılığı Eğitim Merkezi Yayınları. 2004.
Solano L, Barkema HW, Pajor EA, et al. Prevalence of lameness and associated risk factors in Canadian Holstein-Friesian cows housed in freestall barns. Journal of Dairy Science, 2015;98(10):6978-91. DOI: 10.3168/jds.2015-9652.
Garvey M. Lameness in Dairy Cow Herds: Disease Aetiology, Prevention and Management. Dairy, 2022;3:199-210. https://doi.org/10.3390/dairy3010016
Kofler J, Hoefler M, Hartinger T, et al. Effects of High Concentrate-Induced Subacute Ruminal Acidosis Severity on Claw Health in First-Lactation Holstein Cows. Animals, 2023; 13: 1418. https://doi.org/10.3390/ani13081418
Vanegas J, Overton M, Berry SL, et al. Effect of Rubber Flooring on Claw Health in Lactating Dairy Cows Housed in Free-Stall Barns. Journal of Dairy Science, 2006; 89:4251–4258.
Akköse M, İzci C. Süt ineklerinde yatma süresinin topallıklara etkisi ve yatma süresini etkileyen faktörler. Lalahan Hayvancılık Araştırma Enstitüsü Dergisi, 2017; 57(1):44-51.
Witkowska D, Poniewaz ˙A. The Effect of Housing System on Disease Prevalence and Productive Lifespan of Dairy Herds—A Case Study. Animals, 2022;12:1610. https://doi.org/10.3390/ani12131610.
Beaver A, Weary DM, Keyserlingk AG. Invited review: The welfare of dairy cattle housed in tiestalls compared to less restrictive housing types: A systematic review. Journal of Dairy Science, 2021; 104: 9383–9417. https://doi.org/10.3168/jds.2020-19609.
Popescu S, Borda C, Diugan EA, et al. The effect of the housing system on the welfare quality of dairy cows. Italian Journal of Animal Science, 2014;13:2940. https://doi.org/10.4081/ijas.2014.2940.
van Eerdenburg FJCM, Ruud LE. Design of Free Stalls for Dairy Herds: A Review. Ruminants. 2021; 1(1):1-22. https://doi.org/10.3390/ruminants1010001
Gard JA, Taylor DR, Wilhite DR, et al. Effect of exercise and environmental terrain on development of the digital cushion and bony structures of the bovine foot. American Journal of Veterinary Research, 2015;76: 246–252. DOI: 10.2460/ajvr.76.3.246.
Olmos G, Boyle L, Hanlon A, et al. Hoof disorders, locomotion ability and lying times of cubicle-housed compared to pasture-based dairy cows. Livestock Science, 2009;125(2-3):199–207. https://doi.org/10.1016/j.livsci.2009.04.009
Alawneh JI, Stevenson MA, Williamson NB, et al. The effects of live weight loss and milk production on the risk of lameness in a seasonally calving, pasture fed dairy herd in New Zealand. Preventive Veterinary Medicine, 2014; 113:72–79. DOI: 10.1016/j.prevetmed.2013.10.010.
Ranjbar S, Rabiee AR, Gunn A, et al. Identifying risk factors associated with lameness in pasture-based dairy herds. Journal of Dairy Science, 20169; 9: 7495–7505. DOI: 10.3168/jds.2016-11142
Han MC, Sağlıyan A, Polat. Sığırlarda Ahır Zemin Tiplerinin Ayak Hastalıkları ve Tırnak Deformasyonları Üzerine Etkilerinin Araştırılması. Harran Üniversitesi Veteriner Fakültesi Dergisi, 2017; 6 (1): 19-24.
Magrin L, Contiero B, Cozzi G, et al. Deviation of Behavioural and Productive Parameters in Dairy Cows Due to a Lameness Event: A Synthesis of Reviews. Italian Journal of Animal Science, 2023;22:739–748. https://doi.org/10.1080/1828051X.2023.2241870.
Leonard FC, O’Connell JM, O’Farrell KJ. Effect of overcrowding on claw health in first-calved Friesian heifers. British Veterinary Journal, 1996;152:459–472.
Tucker, CB, Jensen MB, ∙ de Passillé AM, et al. Invited review: Lying time and the welfare of dairy cows. Journal of Dairy Science, 2021;104(1): 20-46. https://doi.org/10.3168/jds.2019-18074.
Cook NB, Rieman J, Gomez A, Burgi K. Observations on the design and use of footbaths for the control of infectious hoof disease in dairy cattle. The Veterinary Journal, 2012;193(3):669-673. DOI: 10.1016/j.tvjl.2012.06.051.
Prastiwi A, Okumuş Z, Hayırlı A, et al. Effectiveness of Copper Sulfate Solutions in Footbaths in Dairy Cattle. Atatürk University Jornal of Veterinary Science, 2019; 14(3): 238-245. DOI: 10.17094/ataunivbd.538342.
Solano L, Barkema HW, Pickel C, et al. Effectiveness of a standardized footbath protocol for prevention of digital dermatitis. Jornal of Veterinary Science, 2017;100:1295–1307. https://doi.org/10.3168/jds.2016-11464
Blowey RW. Cattle Lameness and Hoof Care. 3rd ed. Sheffield, UK: 5m Publishing; 2015
Dahlvik M, Koç G, Paakala E. The effects of hoof health and hoof trimming on farm profitability. Livestock Science, 2024;285:105497.
Manske T, Hultgren J, Bergsten C. The effect of claw trimming on the hoof health of Swedish dairy cattle. Preventive Veterinary Medicine, 2002; 54: 113–129.
Mahendran SA, Huxley JN, Chang YM, et al. Randomised controlled trial to evaluate the effect of foot trimming before and after first calving on subsequent lameness episodes and productivity in dairy heifers. The Veterinary Journal, 2017; 220:105-110. DOI: 10.1016/j.tvjl.2017.01.011.
Sadiq MB, Ramanoon SZ, Shaik Mossadeq WMM, et al. Preventive Hoof Trimming and Animal-Based Welfare Measures Influence the Time to First Lameness Event and Hoof Lesion Prevalence in Dairy Cows. Frontiers in Veterinary Science, 2021; 8:631844. DOI: 10.3389/fvets.2021.631844.
Lean IJ, Westwood CT, Golder HM, et al. Impact of nutrition on lameness and claw health in cattle. Livestock Science, 2013;156(1-3):71-87.
Langova L, Novotna I, Nemcova P, et al. Impact of Nutrients on the Hoof Health in Cattle. Animals (Basel), 2020;10(10):1824. DOI: 10.3390/ani10101824.
Sanders AH, Shearer JK, De Vries A. Seasonal incidence of lameness and risk factors associated with thin soles, white line disease, ulcers, and sole punctures in dairy cattle. Journal of Dairy Science, 2009; 92: 3165–3174. DOI: 10.3168/jds.2008-1799
Refaai W, Van Aert M, Abd El-Aal AM, et al. Infectious diseases causing lameness in cattle with a main emphasis on digital dermatitis (Mortellaro disease). Livestock Science, 2013;156:53–63.
Browne N, Hudson CD, Crossley RE, et al. Cow- and herd-level risk factors for lameness in partly housed pasture-based dairy cows. Journal of Dairy Science, 2022;105:1418–1431.
Palmer M, O’Connell N. Digital Dermatitis in Dairy Cows: A Review of Risk Factors and Potential Sources of Between-Animal Variation in Susceptibility. Animals, 2015; 5: 512–535.
Bicalho RC, Machado VS, Caixeta LS. Lameness in dairy cattle: A debilitating disease or a disease of debilitated cattle? A cross-sectional study of lameness prevalence and thickness of the digital cushion. Journal of Dairy Science, 2009;92(7):3175-3184. DOI: 10.3168/jds.2008-1827.
Espejo LA, Endres MI, Salfer JA. Prevalence of lameness in high-producing holstein cows housed in freestall barns in Minnesota. Journal of Dairy Science, 2006;89(8):3052-3058. DOI: 10.3168/jds.S0022-0302(06)72579-6.
Foditsch C, Oikonomou G, Machado VS, et al. Lameness prevalence and risk factors in large dairy farms in upstate New York. Model development for the prediction of claw horn disruption lesions. PLoS ONE, 2016;11: e0146718.
Gardenier J, Underwood J, Weary DM, et al. Pairwise comparison locomotion scoring for dairy cattle. Journal of Dairy Science, 2021;104(5):6185-6193. DOI: 10.3168/jds.2020-19356.
Werema CW, Laven L, Mueller K, et al. Evaluating Alternatives to Locomotion Scoring for Lameness Detection in Pasture-Based Dairy Cows in New Zealand: Infra-Red Thermography. Animals, 2021;11:3473. https:// doi.org/10.3390/ani11123473
Thomas HJ, Remnant JG, Bollard NJ, et al. Recovery of chronically lame dairy cows following treatment for claw horn lesions: a randomised controlled trial. Veterinary Record, 2016 178(5):116. DOI: 10.1136/vr.103394
Alsaaod M, Schaefer AL, Büscher W, et al. The Role of Infrared Thermography as a Non-Invasive Tool for the Detection of Lameness in Cattle. Sensors (Basel), 2015;15(6):14513-14525. DOI: 10.3390/s150614513.
Nejati A, Bradtmueller A, Shepley E, et al. Technology applications in bovine gait analysis: A scoping review. PLoS One, 2023;18(1):e0266287. DOI: 10.1371/journal.pone.0266287.
Schlageter-Tello A, Bokkers EA, Koerkamp PWG, et al. Relation between observed locomotion traits and locomotion score in dairy cows. Journal of Dairy Science, 2015;98(12):8623-3863. DOI: 10.3168/jds.2014-9059.
van Hertem T, Parmet Y, Steensels M, et al. The effect of routine hoof trimming on locomotion score, ruminating time, activity, and milk yield of dairy cows. Journal of Dairy Science, 2014 97(8):4852-4863. https://doi.org/10.3168/jds.2013-7576.
Schlageter-Tello A, Bokkers EAM, Koerkamp PWG, et al. Manual and automatic locomotion scoring systems in dairy cows: A review. Preventive Veterinary Medicine, 2014; 116:12–25.