Biological mechanism of shockwave in bone.

Cheng JH, Wang CJ. International Journal of Surgery (2015)

Low-energy extracorporeal shock wave therapy as a treatment for medial tibial stress syndrome.

Rompe JD, Cacchio A, Furia JP, Maffulli N. American Journal of Sports Medicine (2010)

Extracorporeal shock-wave therapy compared with surgery for hypertrophic long-bone nonunions.

Cacchio A, Giordano L, Colafarina O, Rompe JD, Tavernese E, Ioppolo F, Flamini S, Spacca G, Santilli V. Journal of Bone and Joint Surgery (2009)

Shock waves in the treatment of stress fractures.

Moretti B, Notarnicola A, Garofalo R, Moretti L, Patella S, Marlinghaus E, Patella V. Ultrasound in Medicine and Biology (2009)

The effects of extracorporeal shock wave in acute high-energy long bone fractures of the lower extremity.

Wang, CJ et al. Archives of Orthopaedic and Trauma Surgery (2006)

Treatment for osteonecrosis for the femoral head: comparison of extracorporeal shock waves with core decompression and bone-grafting.

Wang, CJ et al. The Journal of Bone and Joint Surgery (2005)

Effect of shock wave therapy on acute fractures of the tibia: a study in a dog model.

Wang CJ, Huang HY, Chen HH, Pai CH, Yang KD. Clinical Orthopaedics and Related Research (2001)

Treatment of nonunions of long bone fractures with shock waves.

C. Wang, MD. Clinical Orthopaedics and Related Research (2001)

The use of extracorporeal shock wave therapy for the treatment of bone marrow oedema – a systematic review and meta-analysis

Hausser, J; Wieber, J; Catala-Lehnen, P. Journal of Orthopedic Surgery Res. (2021)

Extracorporeal shockwave treatment in knee osteoarthritis: therapeutic effects and possible mechanism

An, S; Li, J; Zie, W; Yin, W; Li, Y; Hu, Y. Bioscience Rep. (2020)

Categories: Clinical Evidence