![]() 2 In contrast to ESWL, the application of shockwaves in orthopedics (orthotripsy) can be beneficial due to their ability to cause interstitial and extracellular responses which lead to tissue regeneration. 1 The essential principle behind this technique revolves around the action of shockwaves, which are rapid but short duration acoustic waves that carry energy and can propagate through tissues. ![]() ESWT first emerged around the 1980s as extracorporeal shockwave lithotripsy (ESWL), a tool used to disintegrate renal stones. Considering these facts, ESWT shows great potential as a useful regenerative medicine technique for the treatment of numerous musculoskeletal injuries.Įxtracorporeal shockwave therapy (ESWT) has become a popular non-invasive therapeutic modality in the field of orthopedics and traumatology for the treatment of many musculoskeletal disorders, including problematic soft tissue wounds. The combination of these effects can lead to tissue regeneration and significant alleviation of pain, improving functional outcomes in injured tissue. Shockwaves can generate interstitial and extracellular responses, producing many beneficial effects such as: pain relief, vascularization, protein biosynthesis, cell proliferation, neuro and chondroprotection, and destruction of calcium deposits in musculoskeletal structures. ESWT works by the emission of acoustic waves (shockwaves) that carry energy and can propagate through tissues. This technique first emerged around the 1980s as extracorporeal shockwave lithotripsy and has been studied since then for its application towards orthopedics and traumatology. ![]() Extracorporeal shockwave therapy (ESWT) is a popular non-invasive therapeutic modality in the medical field for the treatment of numerous musculoskeletal disorders.
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