Hamstring Contractures Clinical Trial
— MEPOfficial title:
Effectiveness of Percutaneous Microelectrolysis and Stretching Exercises on Agility, Strength, and Knee Joint Range in Hamstring Tightness in Athletes
Verified date | April 2022 |
Source | Quiropraxia y Equilibrio |
Contact | n/a |
Is FDA regulated | No |
Health authority | |
Study type | Interventional |
Electrical stimulation has a wide range of clinical applications in rehabilitation, being used for activities such as strengthening, pain control, management of edema, or control of inflammation after injury or surgery. One of the most classic forms of electrotherapy is direct current (DC), which stands out for its particular effects and which are not achieved with other forms of electrical stimulation. A new therapeutic alternative through DC is Percutaneous Microelectrolysis (MEP), which began to have a significant boom in Latin America a couple of years ago. MEP is a minimally invasive procedure in which a low intensity DC is used. MEP has been proposed as a therapeutic resource to reduce muscle contractions and shortenings, thus favoring flexibility, although research to support this effect is lacking. Muscle flexibility is an important component in rehabilitation and training programs. In lower limbs, tightness hamstring muscles is a common condition that limits flexibility and affects sedentary and athletic people. Loss of flexibility of hamstrings has been reported for different sports disciplines, showing a decrease in a high percentage with the exception of sports such as rhythmic gymnastics and dance where flexibility is essential for good performance. Loss of hamstring extensibility has been associated with a higher incidence of muscle tears, patellar tendinopathy, low back pain and alterations in lumbopelvic rhythm associated with compensatory biomechanical changes such as limb shortening, pelvic retroversion, and increased thoracic kyphosis, among others. It is interesting to investigate the effectiveness of MEP in hamstring tightness. A increase in hamstring flexibility can contribute to increased joint range, muscle strength, and lower limb agility.
Status | Completed |
Enrollment | 30 |
Est. completion date | January 31, 2021 |
Est. primary completion date | October 9, 2020 |
Accepts healthy volunteers | Accepts Healthy Volunteers |
Gender | All |
Age group | 18 Years and older |
Eligibility | Inclusion Criteria: - Participants over 18 years of age. - Athletes from the university teams in the branches of rugby, soccer, basketball or tennis. - Presence of hamstring shortening in one of the two extremities (positive straight leg elevation test or Straight Leg Raising). It will be considered as a positive test when the participant, in the supine position, shows tension or discomfort in the posterior region of the thigh when passively raising the lower limb for any angle less than 80 ° of hip flexion with extended knee. In the event that the participant presents a bilateral shortening, the limb with the lower elevation will be taken as shortened hamstrings. Exclusion criteria. - Pain when performing hip or knee movements. - Musculoskeletal injuries such as fractures, sprains, tears, dislocations, contusions, or joint problems of the lower extremities in the past 3 months. - Skin disorders such as scars, burns, psoriasis or wounds in the posterior region of the thighs. - Neurological signs or symptoms such as tingling, loss of sensation in the lower extremities (partial or complete), weakness, changes in color or temperature in the thigh, legs or foot. - Background or circulatory abnormalities in the lower extremities such as arterial ischemia, venous insufficiency, embolism, post-phlebitic syndrome, lymphedema or deep vein thrombosis. - Joint hypermobility (positive Beighton hypermobility test). - Intake of medications or anti-inflammatory drug treatment at the time of recruitment (includes non-steroidal or steroidal anti-inflammatory drugs). - Allergy to metals. - Apprehension or fear of the application of electric current. - Belonephobia (extreme and uncontrollable fear of needles and other objects that can cause bloody wounds such as pins, knives, pocket knives, syringes, etc.). Elimination criteria. - Discomfort during the intervention with electrotherapy that requires stopping treatment. - Failure to complete the evaluation protocol (attendance at all scheduled evaluation sessions). |
Country | Name | City | State |
---|---|---|---|
Chile | Universidad Andrés Bello | Santiago de Chile | Las Condes |
Lead Sponsor | Collaborator |
---|---|
Quiropraxia y Equilibrio |
Chile,
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* Note: There are 48 references in all — Click here to view all references
Type | Measure | Description | Time frame | Safety issue |
---|---|---|---|---|
Primary | Maximum isometric strength differences | Comparing maximum hamstring isometric strength changes pre and post application of microelectrolysis and hamstring stretching protocol. | Baseline and 2 hours later (1 session of treatment) | |
Primary | Joint Range differences | Comparing maximum knee extention range pre and post application of microelectrolysis and hamstring stretching protocol. | Baseline and 2 hours later (1 session of treatment) | |
Primary | Agility differences | Comparison of time changes in performing the T agility test pre and post application of microelectrolysis and hamstring stretching protocol. | Baseline and 2 hours later (1 session of treatment) |
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