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EQUINE VETERINARY EDUCATION / AE / MAY 2019


277


Kawcak, C.E., Frisbie, D.D. and McIlwraith, C.W. (2011) Effects of extracorporeal shock wave therapy and polysulfated glycosaminoglycan treatment on subchondral bone, serum biomarkers, and synovial fluid biomarkers in horses with induced osteoarthritis. Am. J. Vet. Res. 72, 772-779.


Kersh, K.D., McClure, S.R., Van Sickle, D. and Evans, R.B. (2006) The evaluation of extracorporeal shock wave therapy on collagenase induced superficial digital flexor tendonitis. Vet. Comp. Orthopaed. 19, 99-105.


Kuo, S.J., Su, I.C. and Wang, C.J. (2015) Extracorporeal shockwave therapy (ESWT) in the treatment of atrophic non-unions of femoral shaft fractures. Int. J. Surg. 24, 131-134.


Link, K.A., Koenig, J.B., Silveira, A., Plattner, B.L. and Lillie, B.N. (2013) Effect of unfocused extracorporeal shock wave therapy on growth factor gene expression in wounds and intact skin of horses. Am. J. Vet. Res. 74, 324-332.


Lischer, C., Ringer, S., Schnewlin, M., Imboden, I., Furst, A., Stockli, M. and Auer, J. (2007) Treatment of chronic proximal suspensory desmitis in horses using focused electrohydraulic shockwave therapy. Schweizer. Arch. Tierheilkd. 148, 561-568.


Loske, A.M. (2017) Shock waves as used in biomedical applications. In: Medical and Biomechanical Applications of Shock Waves, Springer, Cham, Switzerland. pp 19-33, 189-203.


McClure, S.R. and Evans, R.B. (2002) In vivo evaluation of extracorporeal shock wave therapy for collagenase induced suspensory ligament desmitis. Proc. Am. Ass. Equine Practnrs. 48, 378-380.


McClure, S. and Weinberger, T. (2003) Extracorporeal shock wave therapy: clinical applications and regulation. Clin. Tech. Equine Pract. 2, 358-367.


McClure, S., VanSickle, D. and White, R. (2000) Extracorporeal shock wave therapy: What is it? What does it do to equine bone? Proc. Am. Ass. Equine Practnrs. 46, 197-199.


McClure, S.R., Van Sickle, D., Evans, R., Reinertson, E.L. and Moran, L. (2004) The effects of extracorporeal shock-wave therapy on the ultrasonographic and histologic appearance of collagenase- induced equine forelimb suspensory ligament desmitis. Ultrasound Med. Biol. 30, 461-467.


National Thoroughbred Racing Association. (2016) Safety and Integrity Alliance Code of Standards. https://www.ntra.com/wp-content/ uploads/2016-NTRA-SI-Code-of-Standards.pdf


Ogden, J.A., Toth-Kischkat, A. and Schultheiss, R. (2001) Principles of shock wave therapy. Clin. Orthop. Relat. Res. 387, 8-17.


Perez, M., Weiner, R. and Giley, J.C. (2003) Extracorporeal shock wave therapy for plantar fasciitis. Clin. Podiatr. Med. Surg. 20, 323-334.


Qin, L., Wang, L., Wong, M.W., Wen, C., Wang, G., Zhang, G., Chan, K.M., Cheung, W.H. and Leung, K.S. (2010) Osteogenesis induced by extracorporeal shockwave in treatment of delayed osteotendinous junction healing. J. Orthop. Res. 28, 70-76.


Raabe, O., Shell, K., Goessl, A., Crispens, C., Delhasse, Y., Eva, A., Scheiner-Bobis, G., Wenisch, S. and Arnhold, S. (2013) Effect of extracorporeal shock wave on proliferation and differentiation of equine adipose tissue-derived mesenchymal stem cells in vitro. Am. J. Stem Cell. 2, 62-73.


Revenaugh, M.S. 2005.Extracorporeal shock wave therapy for treatment of osteoarthritis in the horse: clinical applications. Vet. Clin. North Am.: Equine Pract. 21, 609-625.


Rompe, J.D., Decking, J., Schoellner, C. and Theis, C. (2004) Repetitive low-energy shock wave treatment for chronic lateral epicondylitis in tennis players. Am. J. Sports Med. 32, 734-743.


Schuh, C.M.A.P., Heher, P., Weihs, A.M., Banerjee, A., Fuchs, C., Gabriel, C., Wolbank, S., Mittermayer, R., Redl, H., Runzler, D. and Teuschl, A.H. (2014) In vitro extracorporeal shock wave treatment enhances stemness and preserves multipotency of rat and human adipose-derived stem cells. Cytotherapy 16, 1666-1678.


Sheu, J., Lee, F., Yuen, C., Chen, Y., Huang, T., Chua, S., Chen, Y., Chen, C., Chai, H., Sung, P., Chang, H., Sun, C. and Yip, H. (2015) Combined therapy with shock wave and autologous bone marrow-derived mesenchymal stem cells alleviates left ventricular dysfunction and remodeling through inhibiting inflammatory stimuli, oxidative stress and enhancing angiogenesis in a swine myocardial infarction model. J. Int. Cardiol. 193, 69-83.


Speed, C. (2013) A systematic review of shockwave therapies in soft tissue conditions: focusing on the evidence. Br. J. Sports Med. 48, 1538-1542.


United States Equestrian Federation. (2016) Guidelines for Drugs and Medications. United States Equestrian Federation Equine Drugs and Medications Program, Columbus, OH. Last revised November 2015. https://issuu.com/equestrian/docs/drugsmedsguidelines11_15? e = 1346541/31408456


Waguespack, R.W., Burba, D.J., Hubert, J.D., Vidal, M.A., Lomax, L.G., Chirgwin, S.R. and Lopez, M.J. (2011) Effects of extracorporeal shock wave therapy on desmitis of the accessory ligament of the deep digital flexor tendon in the horse. Vet. Surg. 40, 450-456.


Waldern, N.M., Weishaupt, M.A., Imboden, I., Wiestner, T. and Lischer, C.J. (2005) Evaluation of skin sensitivity after shock wave treatment in horses. Am. J. Vet. Res. 66, 2095-2100.


Wang, C.J. (2012) Extracorporeal shockwave therapy in musculoskeletal disorders. J. Orthop. Surg. Res. 7, 1-8.


Wang, C.J., Huang, H.Y. and Pai, C.H. (2002) Shock wave-enhanced neovascularization at the tendon-bone junction: An experiment in dogs. J. Foot Ankle Surg. 41, 16-22.


Wang, C.J., Wang, F.S., Yang, K.D., Weng, L.H., Hsu, C.C., Huang, C.S. and Yang, L.C. (2003) Shock wave therapy induces neovascularization at the tendon-bone junction A study in rabbits. J. Orthop. Res. 21, 984-989.


Waugh, C.M., Morrissey, D., Jones, E., Riley, G.P., Langberg, H. and Screen, H.R. (2015) In vivo biological response to extracorporeal shockwave therapy in human tendinopathy. Eur. Cell Mater. 29, 268-280.


Yahata, K., Kanno, H., Ozawa, H., Yamaya, S., Tateda, S., Ito, K., Shimokawa, H. and Itoi, E. (2016) Low-energy extraocorporeal shock wave therapy for promotion of vascular endothelial growth factor expression and angiogenesis and improvement of locomotor and sensory functions after spinal cord injury. J. Neurosurg. Spine. 25, 745-755.


Zhao, Z., Jing, R., Shi, Z., Zhao, B., Ai, Q. and Xing, G. (2013) Efficacy of extracorporal shockwave therapy for knee osteoarthritis: a randomized controlled trial. J. Surg. Res. 185, 661-666.


Zissler, A., Steinbacher, P., Zimmerman, R., Pittner, S., Stoiber, W., Bathke, A.C. and Sanger, A.M. (2016) Extracorporeal shock wave therapy accelerates regeneration after acute skeletal muscle injury. Am. J. Sports Med. 45, 676-684.


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