Clinical and ultrasonographic correlation of changes in the equine axial skeleton with thoracic and pelvic lameness detected by objective evaluation

Authors

DOI:

https://doi.org/10.33448/rsd-v12i11.43764

Keywords:

Cervical; Thoracolumbar; Lameness; Ultrasonographic; Objective.

Abstract

Cervical and thoracolumbar changes are commonly found in sports animals and may be related to biomechanical alterations, driving movement, and the type of saddle used. The objective of this study was to characterize the correlation between clinical and ultrasonographic findings of the equine axial skeleton with objective evaluation lameness in the thoracic or pelvic limbs. A total of 76 horses of the mounted cavalry with an average of ten years of age, divided between castrated males and females of indeterminate breeds, were submitted to clinical, ultrasonographic and objective evaluations. The evaluated variables were classified in scores from 0 to 4, for later statistical analysis spearman correlation through the RStudio® software. The animals were classified into six groups according to the objective, clinical and ultrasonographic changes. A weak positive correlation was observed between the objective evaluation variable in relation to the clinical (r = 0.1, p > 0,05) and ultrasonographic (r = 0.1, p > 0,05) evaluation variables. In the present study, it was impossible to consider the correlations statistically significant since the p-value was higher than the significance level of 5%. Therefore, the associated evaluation of the axial and appendicular skeleton is of fundamental importance in the clinical routine to investigate musculoskeletal changes. This was demonstrated in the present study, where 68.42% (n=52) presented both clinical and ultrasonographic changes of the axial skeleton concomitantly with thoracic and/or pelvic lameness.

References

Dyson, S. J. (2011). The Axial Skeleton In: Dyson, S. J., Ross, M. W., editors. Diagnosis and Management of Lameness in the Horse. (2th ed.), Saunders. 606-616.

García-López, M. J. (2018). Neck, back, and pelvic pain in sport horses. Veterinary Clinics: Equine Practice. 34(2):235–251. https://doi.org/10.1016/j.cveq.2018.04.002

Klide, A. M. (1984). Acupuncture for treatment of chronic back pain in the horse. Acupuncture & Electrother Research. 9(1):57-70. 10.3727/036012984816714848.

Martin, B. B., & Klide, A. M. (1997). Diagnosis and treatment of chronic back pain in horses. In: Proceedings of the 43rd Annual Convention of the American Association of Equine Practitioners, Denver. 310.

Carr, E. A., & Maher, O. (2014). Neurologic causes of gait abnormalities in the athletic horse. In: Hinchcliff KW, Kaneps A. J, Geor R. J. editors. Equine Sports Medicine and Surgery. (2th ed.), Saunders Elsevier. 503–526.

Denoix, J. M. (1998). Diagnosis of the cause of back pain in horses. In: Proceedings of the Conference on Equine Sports Medicine and Science. Cordoba. 97.

Gómez-Álvarez, C. B., Rhodin, M., Bobbert, M. F., Johnston, C., Roepstorff, L., Back, W., & Van Weeren, P. R. (2007a). Limb kinematics in horses with induced back pain. In: The Biomechanical Interaction between Vertebral Column and Limbs in the Horse. 71-85.

Gómez-Álvarez, C. B., Wennerstrand, J., Bobbert, M. F., Lamers, L., Johnston, L., Back, W., & Van-Weeren, P. R. (2007b). The effect of induced forelimb lameness on thoracolumbar kinematics during treadmill locomotion. Equine Veterinary Journal. 39:197-201.

Martin, P., Cheze, L., Pourcelot, P., Desquilbet, L., Duray, L., & Chateau, H. (2017). Effects of the rider on the kinematics of the equine spine under the saddle during the trot using inertial measurement units: Methodological study and preliminary results. The Veterinary Journal. 221:6–10.

Keegan, K. G., Macallister, C. G., Wilson, D. A., Gedon, C. A., Kramer, J., Yonezawa, Y., & Maki, H. (2012). Comparison of an inertial sensor system with a stationary force plate for evaluation of horses with bilateral forelimb lameness. American Journal of Veterinary Research. 73:368–374.

Denoix, J. M. (1998). Diagnosis of the cause of back pain in horses. Conference on Equine Sports Medicine and Science, Wageningen, The Netherlands. 97:110.

Greve, L., & Dyson, S. (2013). An investigation of the relationship between hind limb lameness and saddle-slip. Equine Veterinary Journal. 45:570–577.

Greve, L., Dyson, S., & Pfau, T. (2017). Alterations in thoracolumbosacral movement when pain causing lameness has been improved by diagnostic analgesia. The Veterinary Journal. 224:55-63.

Carr, E. A., & Maher, O. (2014). Neurologic causes of gait abnormalities in the athletic horse. In: Hinchcliff, K.W., Kaneps, A.J., Geor, R.J., editors. Equine sports medicine and surgery. (2th ed.), Saunders Elsevier. 503–526.

Deroue, A., Spriet, M., & Aleman, M. (2016). Prevalence of anatomical variation of the sixth cervical vertebra and association with vertebral canal stenosis and articular process osteoarthritis in the horse. Veterinary Radiology Ultrasound. 57:253-258.

Berg, L. C., Nielsen, J. V., & Thoefner, M. B. (2003). Ultrasonography of the equine cervical region: a descriptive study in eight horses. Equine Veterinary Journal. 35:647–55.

Ricardi, G., & Dyson, S. J. (1993). Forelimb lameness associated with radiographic abnormalities of the cervical vertebrae. Equine Veterinary Journal. 25:422-426.

Denoix, J. M. (1999). Ultrasonographic evaluation of back lesions. Veterinary Clinics of North America Equine Practice. 15:131–159.

Weishaupt, M. A., Wiestner, T., Hogg, H. P., Jordan, P., & Auer, J. A. (2004). Compensatory load redistribution of horses with induced weight bearing hind limb lameness trotting on a treadmill. Equine Veterinary Journal. 36:727–733.

Greve, L., & Dyson, S. (2014). The interrelationship of lameness, saddle-slip and back shape in the general sports horse population. Equine Veterinary Journal. 46:687–694.

Greve L, & Dyson S. (2015). A longitudinal study of back dimension changes over 1 year in sports horses. Equine Veterinary Journal. 203:65–73.

Valberg, J. S. (1999). Spinal muscle pathology. Veterinary Clinics of North America Equine Practice. 15:87-96.

Dyson, S. (2010). Poor performance and lameness. In: Ross, M., Dyson, S., editors. Diagnosis and management of lameness in the horse. (2th ed.), Elsevier Saunders, St Louis: MO: Elsevier Saunders. 920-924.

Greve, L., & Dyson, S. (2014b). Saddle fit and management: an investigation of the association with equine thoracolumbar asymmetries horse and rider health. Equine Veterinary Journal. 47:415-421.

Jeffcott, L. B. (1999). Historical perspective and clinical indications. Veterinary Clinics of North America Equine Practice.

Malive, S., Voute, L., Lund, D., & Marshall, J. F. (2013). An inertial sensor-based system can objectively assess diagnostic anaesthesia of the equine foot. Equine Veterinary Journal. 45:26–30.

Rhodin, M., Roepstorff, L., French, A., Keegan, K. G., Pfau, T., & Egenvall, A. (2015). Head and pelvic movement asymmetry during lungeing in horses with symmetrical movement on the straight. Equine Veterinary Journal. 1–6.

Azevedo, M. S. A., De La Côrte, F. D., Pozzobon, R., Dau, S. T. D., & Gallio, M. (2019). Objective evaluation versus subjective evaluation of flexion tests in the pelvic limb of horses. Brazil Journal of Veterinary Research and Animal Science.

Mccracken, M. J., Kramer, J., Keegan, K. G., Lopes, M., Wilson, D. A., Reed, S. K., Lacarrubba, A., & Rasch, M. (2012). Comparison of an inertial sensor system of lameness quantification with subjective lameness evaluation. Equine Veterinary Journal. 44: 652–656.

Donnell, J. R., Frisbie, D. D., King, M. R., Goodrich, L. R., & Haussler, K. K. (2015). Comparison of subjective lameness evaluation, force platforms and na inertial-sensor system to identify mild lameness in an equine osteoarthritis model. The Veterinary Journal.

Keegan, K. G., Arafat, S., Skubic, M., Wilson, D. A., & Kramer, J. (2003). Determination and differentiation (right vs left) of equine forelimb lameness using continuous wavelet transformation and neural network classification of kinematic data. American Journal of Veterinary Research. 64:1376-1381.

Cohen, J. (1988). Statistical power analysis for the behavioural sciences. Lawrence Erlbaum Association, (2th ed.), Hillsdale.

Zimmerman, M., Dyson, S., & Murray, R. (2011). Close, impinging and overriding spinous processes in the thoracolumbar spine: The relationship between radiological and scintigraphic findings and clinical signs. Equine Veterinary Journal. 44(2):178–184.

Henson, F. M. D. (2018). Equine Neck and Back Pathology: Diagnosis and Treatment. (2a ed.), John Wiley & Sons Ltd.

Mayaki, A. M., Intan-Shameha, A. R., Noraniza, M. A., Mazlina, M. Adamu, L., & Abdullah, R. (2019). Clinical investigation of back disorders in horses: A retrospective study (2002-2017). Veterinary World. 12(3):377-381.

Mayaki, A. M., Intan-Shameha, A. R., Noraniza, M. A., Mazlina, M., Adamu, L., & Abdullah, R. (2020). Clinical assessment and grading of back pain in horses. Journal of Veterinary Science. 21(6):1-10.

Masko, M., Borowska, M. Domino, M., Jasinski, T., Zdrojkowski, L., & Gajewski, Z. (2021). A novel approach to thermographic images analysis of equine thoracolumbar region: the effect of effort and rider’s body weight on structural image complexity. BMC Veterinary Research. 17:2-12.

Melo, U. P. & Ferreira, C. (2020). Lombalgia em equinos de vaquejada: achados clínicos, ultrassonográficos e resultados terapêuticos de 25 casos. Revista Brasileira de Ciência Veterinária. 27(4):193-199, dez.

Findley, J. & Singer, E. (2015). Equine back disorders 1. Clinical presentation, investigation and diagnosis. In Practice. 37(9):456-467.

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Published

03/11/2023

How to Cite

BASTIANI, G. de; AZEVEDO, M. da S.; JACOBSEN, T. K. .; RODRIGUES, A. P.; DE LA CÔRTE, F. D. Clinical and ultrasonographic correlation of changes in the equine axial skeleton with thoracic and pelvic lameness detected by objective evaluation . Research, Society and Development, [S. l.], v. 12, n. 11, p. e113121143764, 2023. DOI: 10.33448/rsd-v12i11.43764. Disponível em: https://rsdjournal.org/index.php/rsd/article/view/43764. Acesso em: 31 oct. 2024.

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Section

Agrarian and Biological Sciences