The aim of this study is to investigate the effectiveness of high-intensity laser therapy for treating plantar flexor muscle spasticity in subacute and chronic stroke patients, focusing on its impact on spasticity, joint range of motion, pain, muscle thickness, functional ambulation, and quality of life.
Post-stroke lower limb spasticity disrupts balance and walking, often resulting in decreased walking speed, increased wheelchair use, and the need for caregiver assistance. Various approaches are utilized in spasticity management, including physical therapy, splinting, oral medications, chemical neurolysis, and surgical interventions. Laser therapy is a non-invasive, painless modality used in physiotherapy units, with a low incidence of side effects. Laser therapy has been shown to reduce muscle fatigue and increase peak torque (muscle strength) when applied before exercise. The use of high-intensity laser therapy in physiotherapy protocols has become increasingly common in recent years. Studies suggest that it enhances healing in tendons and ligaments, prevents fibrosis development, increases local blood flow and tissue regeneration, and reduces edema and pain. The aim of this study is to investigate the effectiveness of high-intensity laser therapy for treating plantar flexor muscle spasticity in subacute and chronic stroke patients, focusing on its impact on spasticity, joint range of motion, pain, muscle thickness, functional ambulation, and quality of life.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
SINGLE
Enrollment
24
All patients will receive a rehabilitation program consisting of stretching, strengthening, balance, and walking exercises targeting the lower extremities for 45 minutes, 5 days a week, for 6 weeks. Walking training will initially begin on level ground and gradually progress to different levels and surfaces. High-intensity laser will be applied continuously in biostimulation mode 3 days a week, once a day, for a total of 9 sessions over 3 weeks
The same procedure will be followed, but sham laser will be applied at 0 j/cm2 for 10 minutes.
Gaziler Physical Medicine and Rehabilitation Education and Research Hospital
Ankara, Turkey (Türkiye)
10-Meter Walk Test
Test to measure patients\' functional ambulation skills.
Time frame: Baseline- 3 - 6 weeks(follow up)
Modified Ashworth Scale
Evaluation of plantar flexor muscle spasticity using the Modified Ashworth Scale (MAS). The original Ashworth scale was a 5 point numerical scale that graded spasticity from 0 to 4, with 0 being no resistance and 4 being a limb rigid in flexion or extension.
Time frame: Baseline- 3 - 6 weeks(follow up)
Joint Range of Motion (ROM) Measurement
Passive measurement of ankle joint range of motion (ROM) with a goniometer
Time frame: Baseline- 3 - 6 weeks(follow up)
Ultrasonography
Sonographic measurement of medial gastrocnemius muscle thickness
Time frame: Baseline- 3 - 6 weeks(follow up)
Timed Up and Go test
To determine fall risk and measure the progress of balance, sit to stand and walking
Time frame: Baseline- 3 - 6 weeks(follow up)
Stroke Specific Quality of Life Scale
It is a patient-centered outcome measure intended to provide an assessment of health-related quality of life (HRQOL) specific to patients with stroke. Scores range from 49-245. Higher scores indicate better functioning.
Time frame: Baseline- 3 - 6 weeks(follow up)
Visual analogue scale for pain (VAS- pain)
Pain intensity was measured with visual analogue scale for pain (0-10 mm; 0 means no pain, 10 means severe pain) which is used to measure musculoskeletal pain with very good reliability and validity.
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Time frame: Baseline- 3 - 6 weeks(follow up)