Shockwave Therapy

4

Review clinical trials related to Shockwave Therapy. Use filters to narrow results by trial status, phase, treatment, biological sex and sponsor.

Condition / disease
Location
Status: Recruiting

Routine Rehabilitation Versus Shock Wave Therapy for Scapular Dyskinesis

It has been proposed that altered scapular muscle function can contribute to alterations in shoulder kinematics, which often lead to SD and are frequently associated with other shoulder pathologies, such as RC tears, labrum tears, impingement syndrome, and glenohumeral joint instability. However, whether SD leads to the development of these diseases or is a consequence has yet to be clarified. Changes in scapular kinematics can be attributed not only to altered scapular recruitment patterns (e.g., altered serratus anterior muscle activity) or muscle performance (e.g., force imbalance in the upper and lower trapezius muscles) but also to flexibility deficits in the soft tissue surrounding the scapula, which may restrict normal scapular movement during daily activities and sport- specific movements. Although many studies have investigated the optimal management method, to date, there is no consensus. Conservative approaches involve not only physiotherapy but also other techniques, such as extracorporeal shockwave therapy.

Participants needed: 100
Trial details
Age: 18+Biological sex: AllType: InterventionalSponsor: Tanta UniversityUpdated: Jun 10, 2026Locations: 1
Eligibility criteria

This study included 100 patients with scapular dyskinesis. The patients were div...

History of shoulder or thorax trauma or surgery. [+14]

Status: Recruiting

Shockwave for Elbow and Wrist Spasticity in People With Spinal Cord Injury

Approximately 305,000 people live with a spinal cord injury (SCI) in the United States. Sixty percent of these individuals have tetraplegia, which can cause significant dysfunction of the arms and hands. One of the consequences of SCI is spasticity - involuntary activation of muscles that can hinder bodily functions and negatively affect participation in various aspects of life. Spasticity can lead to loss of functional independence and activity limitations, cause pain, and lead to mood disorders like depression. It can even interfere with rehabilitation and lead to hospitalization. In people with tetraplegia, spasticity of the arms and hands can have a tremendous impact on independence and quality of life, and thus regaining function in these areas remains a top priority. Unfortunately, spasticity is difficult to treat. Common treatments include physical therapy, including exercise or stretching; medications such as Baclofen; and injections with agents like botulinum toxin (also known as Botox). Botox injections are often implemented alongside other modalities like therapy, yet they are invasive, tend to last for only a few months, and carry potential side effects. One potential non-invasive treatment for upper limb spasticity is focused extracorporeal shockwave therapy (f-ESWT), which involves an external application of high-pressure sound waves, similar to ultrasound. An applicator/handpiece is placed on the skin over the spastic muscle and the focused sound waves are applied. f-ESWT carries no long-term side effects with minimal discomfort during application. However, there has been limited research on this treatment option in people with SCI who have arm and hand dysfunction caused by spasticity. The purpose of this study is to fill in that knowledge gap. This will be accomplished by measuring different aspects of spasticity from the perspective of both the clinician and the person with SCI. These will include clinical measures, such as elbow and wrist range of motion, as well as how the treatment impacts the person's functional independence and quality of life. Ultrasound methods will be used to look at the person's muscles to see if any beneficial changes occur in their structure and stiffness. People with SCI who meet eligibility criteria will be invited to the laboratory to receive f-ESWT, which will occur once per week for three consecutive weeks. Treatment will entail application of f-ESWT to the elbow and wrist flexor muscles. Participants will be invited back to the laboratory to have their spasticity measured by a clinician, be asked questions about how their spasticity has impacted their lives, and have their muscles imaged with ultrasound. Findings from this study are expected to generate insight on whether f-ESWT could be a viable treatment option for spasticity of the arms and hands in people with SCI, and if a larger clinical trial is warranted.

Participants needed: 12
Trial details
Phase: Phase 1Age: 18+Biological sex: AllType: InterventionalSponsor: Kessler FoundationUpdated: Mar 30, 2026Locations: 1
Eligibility criteria

18 years of age or older. [+5]

History of surgical procedures in the upper extremity [+6]

Status: Recruiting

The Effects of Extracorporeal Shock Wave Therapy in Postsurgical Scars Especially After Abdominplasty and Breast Reduction.

Scars can be caused by physical trauma, surgical incisions, burn injuries and even acne. Deep cutaneous injuries induce pathological scars. Other factors, such as mechanical loading, bacterial colonization are potential factors thought to underlie human hypertrophic and keloid scar formation or contractures. The effect may include functional impairment and aesthetic disadvantages. Various non-invasive mechanical interventions of physical scar management (e.g. extracorporeal shock wave therapy or ESWT) could have a beneficial influence on wound healing and prevention of hypertrophic scars. ESWT considerably improves the appearance and symptoms of hypertrophic scars. However, the mechanism underlying the observed beneficial effects is not well understood. The objective of the first part of the study is to elucidate the mechanism underlying changes in cellular mechanosensitive pathways that are induced by ESWT. This review will introduce the histopathological effects on ESWT during wound healing and scar development. The main objective of this study is to determine how much mechanical loading on dermal scars will lead to normal scar healing. The optimal duration, the frequency and the intensity of the applied forces in ESWT to generate a beneficiary effect during different phases of wound healing remains unclear. In this study, biopsies from abdomionplasty postsurgical scars will be examined. Thereby it is possible to evaluate the outcomes on a cellular level through assessing the histology of human biopsies under controlled condition. In the second part, the underlying mechanism of ESWT on postsurgical scars will be explored, in different stages of wound healing. Furthermore, the investigators will investigate if changes in physical characteristics (redness, thickness and pliability) in postsurgical scars are associated with changes in reactivity of mechanosensitive pathways. This study will close the gap between the fundamental knowledge on cellular mechanotransduction and the clinical application of mechanotherapy during physical scar management (ESWT).

Participants needed: 150
Trial details
Age: 18-80Biological sex: AllType: InterventionalSponsor: Universiteit AntwerpenUpdated: Mar 6, 2025Locations: 4
Eligibility criteria

Eligible patients aged between 18 and 80 years [+3]

All type of skin diseases or dermatological problems [+5]

Status: Not yet recruiting

Comparing the Effects of Extracorporeal Shockwave Therapy and Splinting in the Treatment of Trigger Finger

The goal of this study is to compare the effects of extracorporeal shockwave therapy and splinting in the treatment of trigger finger. Participants will: Be randomized into two groups (shockwave group and splint group). Visit the clinic once a week for four weeks for therapy. Keep a diary of their symptoms, which will be reviewed at six weeks.

Participants needed: 24
Trial details
Age: 18+Biological sex: AllType: InterventionalSponsor: Mahidol UniversityUpdated: Dec 24, 2024
Eligibility criteria

Patients age ≥ 18 years [+2]

Trigger thumb [+2]