The Effect Of Radial Extracorporeal Shock Wave Therapy (rESWT) Session Frequency For Plantar Flexor Muscle Spasticity On Spasticity, Function, Balance And Muscle Morphology In Children With Cerebral Palsy: A Randomized Controlled Trial Using Sonoelastography
试验速览
- 阶段
- 不适用
- 状态
- 已完成
- 发起方
- 入组人数
- 30
- 试验地点
- 2
- 主要终点
- Change from Baseline in Modified Ashworth Scale Score for Ankle Plantarflexor Spasticity with Knee in Flexed and Extended Positions
研究概览
简要总结
Spasticity is a major contributor to functional limitations in children with cerebral palsy. Radial extracorporeal shock wave therapy (rESWT) has emerged as a non-invasive method for reducing spasticity; however, the optimal session frequency remains unclear. This randomized, assessor-blinded, parallel-group controlled trial investigates the effects of different rESWT session frequencies on spasticity, motor function, balance, pain, and muscle properties in children with cerebral palsy.
Participants are randomly assigned to three groups receiving sham rESWT, one real rESWT session per week combined with sham, or two real rESWT sessions per week, in addition to routine neurological rehabilitation. Outcomes are assessed using clinical scales and ultrasonography-based measures, including shear wave elastography. The study aims to define the dose-response relationship of rESWT and inform optimal treatment protocols in pediatric neurorehabilitation.
详细描述
Cerebral palsy is the most common cause of childhood physical disability, and spasticity represents one of its most prominent and disabling features. Increased muscle tone negatively affects mobility, balance, and functional independence and may lead to secondary musculoskeletal complications. Although pharmacological and surgical interventions are available, there is a growing need for non-invasive, easily applicable, and safe treatment options in pediatric neurorehabilitation. Radial extracorporeal shock wave therapy (rESWT) has gained attention as a promising modality for reducing spasticity and improving muscle properties. Previous studies have demonstrated beneficial effects of rESWT in children with cerebral palsy; however, there is no consensus regarding the optimal treatment frequency and dosing strategy. Determining the most effective session frequency is essential to maximize clinical benefit while minimizing treatment burden. By comparing different rESWT session frequencies, this study aims to define a dose-response relationship and identify the most effective treatment strategy. The findings are expected to contribute to evidence-based optimization of rESWT protocols in pediatric neurorehabilitation and to improve functional outcomes in children with cerebral palsy. This study is designed as a prospective, randomized, double-blind, parallel-group controlled clinical trial conducted at the University of Health Sciences, Sisli Hamidiye Etfal Training and Research Hospital, Department of Physical Medicine and Rehabilitation. Participants are recruited from children presenting to the outpatient clinic who meet the inclusion criteria and none of the exclusion criteria. The study follows a double-blind protocol. Except for the operator delivering the intervention, all individuals involved in the study-including participants and outcome assessors-are blinded to the session type (real versus sham rESWT). This design ensures unbiased outcome assessment and minimizes expectancy effects. All participants continue routine neurological rehabilitation consisting of conventional physical therapy for 60 minutes per session, three sessions per week for 12 weeks. In addition, during the first three weeks, all groups attend the research center two days per week for rESWT or sham procedures combined with standardized stretching. In participants with bilateral plantar flexor spasticity, the lower extremity with the highest initial Modified Ashworth Scale (MAS) score will be taken as the basis for evaluation purposes. However, to preserve functional integrity and avoid ethical concerns, rESWT will be applied equally to both lower extremities. rESWT applications will be carried out targeting the motor end-plate zones located in the proximal one-third of the gastrocnemius muscle belly and the mid-belly region of the soleus muscle. Active and sham applications were performed using the same device, in the same patient position, on the same application area, and for the same duration. In both applications, gel was applied between the applicator head and the skin, and the applicator head was kept in contact with the skin. During sham rESWT, a soft applicator head was used; the applicator was applied with minimal compression on the skin at the lowest pressure level allowed by the device, 0.5 bar. Thus, while maintaining skin contact and physical feedback similar to the active application, the therapeutic shock wave energy transmitted to the tissue was intended to be minimized.
Participants are assigned to one of three parallel groups. Group 1 (Control) receives conventional physical therapy three times per week for 12 weeks (60 minutes per session) and, during the first three weeks, attends the research center twice weekly to receive sham rESWT followed by 20 minutes of stretching on both days, for a total of six sham sessions. Group 2 receives the same conventional physical therapy and, during the first three weeks, attends the research center twice weekly, receiving one session of real rESWT combined with 20 minutes of stretching and one session of sham rESWT combined with 20 minutes of stretching each week (total of three real and three sham sessions). Group 3 receives the same conventional physical therapy and, during the first three weeks, attends the research center twice weekly to receive real rESWT followed by 20 minutes of stretching on both days (total of six real sessions). Real rESWT is delivered using standardized parameters of 5 Hz frequency, 1.5 bar pressure, and 2000 shocks per session.
All clinical and ultrasonographic assessments are performed before exercise and rESWT sessions to avoid acute treatment effects and ensure standardization. Baseline demographic and clinical characteristics are recorded prior to treatment.
Evaluations will be performed at four separate time points: pre-treatment (baseline), at the end of treatment, and at 4 weeks and 12 weeks post-treatment.
- Spasticity levels will be assessed using the Tardieu Scale, Modified Ashworth Scale (MAS), and passive Range of Motion (PROM) measurements.
- The Pediatric Berg Balance Scale (PBS) will be used for balance assessment, the Modified Timed Up and Go Test (MTUG) for functional mobility, and the 10-Meter Walk Test (10MWT) for walking speed.
- For the assessment of spasticity-related pain levels, the Revised Faces Pain Scale (FPS-R), which is appropriate and validated for children, will be used.
- The mechanical properties of the muscle will be quantitatively evaluated using the Shear Wave Elastography (SWE) method; for the evaluation of muscle morphology, muscle thickness will be measured via ultrasonography, and the Modified Heckmatt Scale (MHS) will be applied to classify muscle structural properties
研究设计
- 研究类型
- Interventional
- 分配方式
- Randomized
- 干预模型
- Parallel
- 主要目的
- Treatment
- 盲法
- Double (Participant, Outcomes Assessor)
盲法说明
Participants and outcome assessors are blinded to group allocation and to whether real or sham radial extracorporeal shock wave therapy (rESWT) is administered.
入排标准
- 年龄范围
- 6 Years 至 14 Years(Child)
- 性别
- All
- 接受健康志愿者
- 否
入选标准
- •Children aged 6-14 years diagnosed with cerebral palsy according to the Rosenbaum diagnostic criteria.
- •Gross Motor Function Classification System (GMFCS) level I, II, or III.
- •Modified Ashworth Scale (MAS) score >1 and ≤3 in unilateral or bilateral ankle plantar flexor muscle groups.
- •Presence of a spastic gait pattern characterized by a dynamic component of ankle equinus.
排除标准
- •Age younger than 6 years or older than 14 years.
- •Botulinum toxin type A injection or extracorporeal shock wave therapy (ESWT) within 6 months prior to enrollment.
- •Fixed contracture with passive joint range of motion (ROM) <5° in the affected extremity, or significant bone or joint deformity.
- •History of orthopedic surgery (tendon release or transfer, tenotomy, muscle release surgery, arthrodesis) involving the affected extremity.
- •Cognitive or behavioral disorders that would prevent participation in the intervention or assessments.
- •Uncontrolled systemic disease or significant comorbid conditions.
- •History of neurosurgical intervention (e.g., selective dorsal rhizotomy, neurectomy).
- •Presence of significant dystonia or severe movement disorder in the extremity to be evaluated.
- •Presence of contraindications for ESWT application in the treatment area, including open skin lesions, skin infection, signs of active inflammation, or history of malignancy; bleeding diathesis, use of anticoagulant therapy, or circulatory problems due to vascular pathology.
研究组 & 干预措施
Control (Conventional Physical Therapy + Sham rESWT)
All participants continue routine neurological rehabilitation consisting of conventional physical therapy (60 minutes per session, 3 sessions per week for 12 weeks) tailored to individual goals. In this control arm, during the first 3 weeks, sham radial extracorporeal shock wave therapy (rESWT) is administered 2 days per week (total 6 sham sessions). Each session is followed by 20 minutes of stretching.
干预措施: Sham radial extracorporeal shock wave therapy (rESWT) (Device)
2 Real rESWT Sessions per Week (Real)
All participants continue routine neurological rehabilitation consisting of conventional physical therapy (60 minutes per session, 3 sessions per week for 12 weeks) tailored to individual goals. During the first 3 weeks, real rESWT is administered 2 days per week (total 6 real sessions). Each session is followed by 20 minutes of stretching.
干预措施: Conventional physical therapy (Other)
Control (Conventional Physical Therapy + Sham rESWT)
All participants continue routine neurological rehabilitation consisting of conventional physical therapy (60 minutes per session, 3 sessions per week for 12 weeks) tailored to individual goals. In this control arm, during the first 3 weeks, sham radial extracorporeal shock wave therapy (rESWT) is administered 2 days per week (total 6 sham sessions). Each session is followed by 20 minutes of stretching.
干预措施: Conventional physical therapy (Other)
1 Real rESWT Session per Week (Real + Sham)
All participants continue routine neurological rehabilitation consisting of conventional physical therapy (60 minutes per session, 3 sessions per week for 12 weeks) tailored to individual goals. During the first 3 weeks, rESWT is delivered 2 days per week using a hybrid schedule: one session per week of real rESWT and one session per week of sham rESWT (total 3 real and 3 sham sessions). Each session is followed by 20 minutes of stretching.
干预措施: Real radial extracorporeal shock wave therapy (rESWT) (Device)
1 Real rESWT Session per Week (Real + Sham)
All participants continue routine neurological rehabilitation consisting of conventional physical therapy (60 minutes per session, 3 sessions per week for 12 weeks) tailored to individual goals. During the first 3 weeks, rESWT is delivered 2 days per week using a hybrid schedule: one session per week of real rESWT and one session per week of sham rESWT (total 3 real and 3 sham sessions). Each session is followed by 20 minutes of stretching.
干预措施: Sham radial extracorporeal shock wave therapy (rESWT) (Device)
1 Real rESWT Session per Week (Real + Sham)
All participants continue routine neurological rehabilitation consisting of conventional physical therapy (60 minutes per session, 3 sessions per week for 12 weeks) tailored to individual goals. During the first 3 weeks, rESWT is delivered 2 days per week using a hybrid schedule: one session per week of real rESWT and one session per week of sham rESWT (total 3 real and 3 sham sessions). Each session is followed by 20 minutes of stretching.
干预措施: Conventional physical therapy (Other)
2 Real rESWT Sessions per Week (Real)
All participants continue routine neurological rehabilitation consisting of conventional physical therapy (60 minutes per session, 3 sessions per week for 12 weeks) tailored to individual goals. During the first 3 weeks, real rESWT is administered 2 days per week (total 6 real sessions). Each session is followed by 20 minutes of stretching.
干预措施: Real radial extracorporeal shock wave therapy (rESWT) (Device)
结局指标
主要结局
Change from Baseline in Modified Ashworth Scale Score for Ankle Plantarflexor Spasticity with Knee in Flexed and Extended Positions
时间窗: Baseline (pre-treatment), Day 1 post-treatment, Week 4 post-treatment, and Week 12 post-treatment
Ankle plantarflexor spasticity of the gastrocnemius-soleus complex in the most affected lower limb is assessed using the Modified Ashworth Scale (MAS) with the knee extended and flexed. The MAS is an ordinal scale ranging from 0 to 4 (including grade 1+): Grade 0: No increase in muscle tone. Grade 1: Slight increase in muscle tone with a catch and release or minimal resistance at the end of the range of motion. Grade 1+: Slight increase in muscle tone manifested by minimal resistance through less than half of the range of motion. Grade 2: More marked increase in muscle tone through most of the range of motion, but the affected part is easily moved. Grade 3: Considerable increase in muscle tone, making passive movement difficult. Grade 4: Affected part rigid in flexion or extension. Higher scores indicate greater spasticity severity.
次要结局
- Change from Baseline in Ankle Plantarflexor Spasticity Parameters Assessed by the Tardieu Scale with the Knee Extended and Flexed(Baseline (pre-treatment), Day 1 post-treatment, Week 4 post-treatment, and Week 12 post-treatment)
- Change from Baseline in Passive Ankle Dorsiflexion Range of Motion with the Knee Extended and Flexed (Degrees)(Baseline (pre-treatment), Day 1 post-treatment, Week 4 post-treatment, and Week 12 post-treatment)
- Change from Baseline in Pediatric Berg Balance Scale Score(Baseline (pre-treatment), Day 1 post-treatment, Week 4 post-treatment, and Week 12 post-treatment)
- Change from Baseline in Modified Timed Up and Go Test Completion Time(Baseline (pre-treatment), Day 1 post-treatment, Week 4 post-treatment, and Week 12 post-treatment)
- Change from Baseline in 10-Meter Walk Test Walking Speed(Baseline (pre-treatment), Day 1 post-treatment, Week 4 post-treatment, and Week 12 post-treatment)
- Change from Baseline in Revised Faces Pain Scale Score(Baseline (pre-treatment), Day 1 post-treatment, Week 4 post-treatment, and Week 12 post-treatment)
- Change from Baseline in Intramuscular Stiffness of the Gastrocnemius-Soleus Complex Assessed by Shear Wave Elastography (kPa)(Baseline (pre-treatment), Day 1 post-treatment, Week 4 post-treatment, and Week 12 post-treatment)
- Change from Baseline in Muscle Thickness of the Gastrocnemius-Soleus Complex Measured by Ultrasonography (mm)(Baseline (pre-treatment), Day 1 post-treatment, Week 4 post-treatment, and Week 12 post-treatment)
- Change from Baseline in Muscle Echogenicity of the Gastrocnemius-Soleus Complex Assessed by the Modified Heckmatt Scale(Baseline (pre-treatment), Day 1 post-treatment, Week 4 post-treatment, and Week 12 post-treatment)
研究者
Gülsüm Ertek Dutaç
Principal Investigator
Sisli Hamidiye Etfal Training and Research Hospital
