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临床试验/NCT07744659
NCT07744659尚未招募不适用

Spinal Cord Stimulation for Poststroke Spasticity: a Multicentre, Double-blind, Randomised, Sham-controlled Trial (SCS-PSS)

Beijing Pins Medical Co., Ltd1 个研究点 分布在 1 个国家目标入组 92 人开始时间: 2026年8月6日最近更新:
适应症

试验速览

阶段
不适用
状态
尚未招募
入组人数
92
试验地点
1
主要终点
Change in Mean Modified Ashworth Scale Score of the Primary Target Muscle Groups From Baseline to Week 6

研究概览

简要总结

The goal of this clinical trial is to learn whether spinal cord stimulation (SCS) is effective in treating post-stroke spasticity in adults. It will also evaluate the safety of the implanted SCS system. The main questions it aims to answer are:

  1. Does active SCS reduce limb spasticity compared with sham stimulation?
  2. What device-related problems do participants experience during the study?

All participants receive the same implantation and programming procedures,but no therapeutic stimulation(0 mA) for sham SCS group duringthe first 6 weeks after randomization.

Participants will:

  1. Have an SCS system surgically implanted
  2. Be randomly assigned to receive active SCS or sham SCS for 6 weeks
  3. After completion of the 6-week randomized comparison period, active stimulation will be initiated for all participants.
  4. Attend a post-operative visit within 3 to 7 days after surgery for device activation or sham activation, programming, safety checks, and study assessments
  5. Attend follow-up visits for study assessments at approximately 6, 12, 24 weeks, 1 year and 2 years after randomization
  6. Complete assessments of muscle spasticity, joint range of motion, motor function, walking ability, daily functioning, pain, and quality of life
  7. Report any medical problems or device-related problems during the study

详细描述

Post-stroke spasticity is a common disabling complication of ischemic or hemorrhagic stroke. It can lead to abnormal muscle tone, restricted joint movement, impaired motor function, pain, and reduced independence in daily activities. Current treatments include rehabilitation therapy, oral antispastic medications, and botulinum toxin injections, but some patients continue to have clinically significant spasticity despite these treatments. Spinal cord stimulation (SCS) is a neuromodulation technique that delivers electrical stimulation to the spinal cord and may help regulate abnormal spinal motor circuits and reduce spasticity.

Previous exploratory studies have suggested that SCS may reduce limb spasticity and improve muscle strength, motor coordination, and functional movement after stroke. However, the available evidence is mainly based on small or exploratory studies, and the safety and efficacy of SCS for post-stroke spasticity have not yet been confirmed in a large, randomized, sham-controlled clinical trial. Therefore, a well-designed controlled study is needed to determine whether the observed improvements are caused by active SCS and to further evaluate device-related safety.

The Spinal Cord Stimulation for Post-Stroke Spasticity study (SCS-PSS study) is a prospective, multicenter, double-blind, randomized, sham-controlled clinical trial designed to evaluate the safety and efficacy of an implanted SCS system for adults with post-stroke spasticity. The study will enroll 92 participants with stable unilateral upper- or lower-limb spasticity after ischemic or hemorrhagic stroke who have not achieved their treatment goals with previous treatments. All participants will undergo implantation of an SCS system and will then be randomized in a 1:1 ratio to receive either active SCS or sham SCS during the first 6 weeks after randomization. Participants will attend a postoperative visit within 3 to 7 days for active or sham device activation, programming, safety assessment, and study evaluations. At 6 weeks after randomization, all participants will receive active stimulation and will continue follow-up through 24 weeks. In addition, they will undergo long-term follow-up for up to 2 years to further evaluate the durability of treatment effects and the long-term safety of the implanted SCS system. The primary outcome is the change from baseline to 6 weeks after randomization in the mean Modified Ashworth Scale score of primary target muscle groups. Additional outcomes include joint range of motion, motor function, walking ability, functional independence, pain, quality of life, adverse events, serious adverse events, and device deficiencies.

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
Quadruple (Participant, Care Provider, Investigator, Outcomes Assessor)

入排标准

年龄范围
18 Years 至 75 Years(Adult, Older Adult)
性别
All
接受健康志愿者

入选标准

  • Aged ≥18 years and <75 years, regardless of sex;
  • Diagnosed with ischemic or hemorrhagic stroke, with unilateral or single-limb motor dysfunction persisting for at least 6 months;
  • The primary brain lesion and its underlying cause are clinically stable;
  • Presence of unilateral upper- or lower-limb spasticity, with a Modified Ashworth Scale (MAS) grade of ≥2 in at least two muscle groups of the affected limb;
  • Post-stroke limb dysfunction has not reached the treatment goal despite previous interventions, such as physical therapy and oral medications, and the participant's condition has shown no recent improvement;
  • The type and dose of existing rehabilitation therapy and oral antispastic medications must remain unchanged during the study;
  • Willing and able to complete all study visits and procedures;
  • Able to understand the study and provide written informed consent.

排除标准

  • Any contraindication to spinal cord stimulation surgery;
  • Uncontrolled refractory epilepsy;
  • Presence of tonic spasticity, such as decorticate rigidity or decerebrate rigidity;
  • Poorly controlled severe psychiatric or cognitive impairment, defined as a Beck Depression Inventory-II score >25 or a Mini-Mental State Examination score <24;
  • Active systemic infection;
  • Presence of an implanted neurostimulator or drug delivery system;
  • Botulinum toxin treatment within 4 months before enrollment;
  • Plans to initiate any new treatment during the study that may affect limb movement, including chemical denervation therapies (such as botulinum toxin), oral antispastic medications, surgical procedures (such as peripheral neurotomy or contralateral C7 nerve transfer), or other physical therapy interventions;
  • Pregnancy, breastfeeding, or planned pregnancy during the study;
  • The participant or family is unable or unwilling to participate in long-term SCS treatment management;
  • Participation in another clinical study within 4 weeks before signing informed consent;
  • Any other condition that, in the investigator's judgment, makes the individual unsuitable for participation in the study.

结局指标

主要结局

Change in Mean Modified Ashworth Scale Score of the Primary Target Muscle Groups From Baseline to Week 6

时间窗: Baseline to Week 6 after randomization

The primary outcome is the change in the mean Modified Ashworth Scale (MAS) score of the Primary Target Muscle Groups from baseline to Week 6. The Primary Target Muscle Groups are selected from a upper or lower limb before treatment and must include at least two muscle groups. For the upper limb, eligible muscle groups include the shoulder adductors, shoulder internal rotators, elbow flexors, elbow extensors, forearm pronators, wrist flexors, and finger flexors. For the lower limb, eligible muscle groups include the hip flexors, hip adductors, hip internal rotators, knee flexors, knee extensors, and ankle plantar flexors. For analysis, the original MAS grades are converted to a 0-5 numerical scale, with grade 1+ converted to 2 and grades 2, 3, and 4 converted to 3, 4, and 5, respectively. The mean MAS score is calculated across the selected Primary Target Muscle Groups. Change is calculated as the Week 6 mean MAS score minus the baseline mean MAS score.

次要结局

  • Change in Modified Ashworth Scale Scores of the Primary Target Muscle Groups From Baseline(Day 0, Week 6, Week 12, Week 24, Year 1, and Year 2 after randomization)
  • Proportion of Participants With an Improvement in Mean Modified Ashworth Scale Score of at Least 1 Point(Day 0, Week 6, Week 12, Week 24, Year 1, and Year 2 after randomization)
  • Change in Active and Passive Joint Range of Motion From Baseline(Day 0, Week 6, Week 12, Week 24, Year 1, and Year 2 after randomization)
  • Change in Fugl-Meyer Assessment Score From Baseline(Day 0, Week 6, Week 12, Week 24, Year 1, and Year 2 after randomization)
  • Change in Functional Independence Measure Score From Baseline(Day 0, Week 6, Week 12, Week 24, Year 1, and Year 2 after randomization)
  • Change in Physician Global Assessment Score From Baseline(Day 0, Week 6, Week 12, Week 24, Year 1, and Year 2 after randomization)
  • Change in 10-Meter Walk Test Performance From Baseline(Day 0, Week 6, Week 12, Week 24, Year 1, and Year 2 after randomization)
  • Change in EQ-5D-5L Score From Baseline(Day 0, Week 6, Week 12, Week 24, Year 1, and Year 2 after randomization)
  • Change in Visual Analogue Scale Score From Baseline(Day 0, Week 6, Week 12, Week 24, Year 1, and Year 2 after randomization)

研究者

申办方类型
Industry
责任方
Sponsor

研究点 (1)

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