A systematic review of shockwave therapies in soft tissue conditions: focusing on the evidence
Br J Sports Med. 2014;48(21):1538–42.
Clinical application of extracorporeal shock wave therapy in orthopedics: focused versus unfocused shock waves
Ultrasound Med Biol. 2012;38(10):1673–80.
The effectiveness of extracorporeal shockwave therapy in common lower limb conditions.
Br J Sports Med. 2018;52(6):387–407.
High-energy versus low-energy extracorporeal shock wave therapy for calcifying tendinitis of the shoulder: which is superior?
Clin Orthop Relat Res. 2014;472(9):2816–25.
The effectiveness of extracorporeal shock wave therapy on chronic achilles tendinopathy: a systematic review.
Foot Ankle Int. 2013;34(1):33–41.
The effectiveness of extracorporeal shock wave therapy in lower limb tendinopathy: a systematic review.
Am J Sports Med. 2015;43(3):752–61
Clinical efficacy of extracorporeal shockwave therapy for knee osteoarthritis: a systematic review.
Clin Rehabil. 2019;33(9):1419–30.
Effectiveness of extracorporeal shock wave therapy without local anesthesia in patients with recalcitrant plantar fasciitis.
Am J Phys Med Rehabil. 2017;96(8):529–34.
The role of extracorporeal shockwave treatment in musculoskeletal disorders.
J Bone Joint Surg Am. 2018;100(3):251–63.
Shockwave therapy differentially stimulates endothelial cells: implications on the control of inflammation
Effectiveness of radial shock-wave therapy for calcific tendinitis of the shoulder: single-blind, randomized clinical study.
Phys Ther. 2006;86(5):672–82.
Extracorporeal shockwave therapy in calcifying tendinitis of the shoulder
Knee Surg Sports Traumatol Arthrosc. 2011;19(12):2085–9.
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