Effects of Using the Electrodress Mollii to Reduce Spasticity and Enhance Functioning After Stroke.
试验速览
- 阶段
- 不适用
- 状态
- 已完成
- 发起方
- 入组人数
- 21
- 试验地点
- 2
- 主要终点
- Mechanism substudy and Clinical substudy: NeuroFlexor
研究概览
简要总结
Spasticity is a common manifestation of lesions of central motor pathways, such as after stroke, traumatic brain or spinal cord injury and in cerebral palsy and is associated with increased impairments and disabilities. Spasticity may be associated with pain and contractures, caused by muscle weakness, reduced muscle length and volume that add to the disability.Treatments of spasticity comprise physical therapy, pharmacological agents and surgical treatment. Recently, a systematic review concluded that transcutaneous, electric nerve stimulation may have beneficial effects on spasticity and activity performance after stroke, which lends support to the new treatment method Mollii, which will be evaluated in this study.The Mollii suit provides electric stimulation through multiple electrodes places in a tight fitting suit. This study relates to the clinical trials performed at the University department of rehabilitation medicine at Danderyd Hospital in Stockholm and comprises an initial study of effects on spasticity ("Mechanical substudy") and a following, exploratory treatment trial ("Clinical substudy") in patients with spasticity after stroke.
详细描述
Spasticity is a common manifestation of lesions of central motor pathways, such as after stroke, traumatic brain or spinal cord injury and in cerebral palsy and is associated with increased impairments and disabilities. Spasticity may be associated with pain and contractures, caused by muscle weakness, reduced muscle length and volume that add to the disability.Treatments of spasticity comprise physical therapy, pharmacological agents and surgical treatment. Recently, a systematic review concluded that transcutaneous, electric nerve stimulation may have beneficial effects on spasticity and activity performance after stroke, which lends support to the new treatment method Mollii, which will be evaluated in this study.The Mollii method has been developed by Inervetions, which is a small Swedish med-tech company, and represents an innovative approach for non-invasive electro-stimulation to reduce spasticity and improve motor function. The theoretical background of this treatment method primarily refers to the concept of reciprocal inhibition, i.e. that sensory input from a muscle may inhibit the activation of an antagonistic muscle. Thus, the application of Mollii aims at stimulating a muscle, e.g. the anterior tibial muscle of the lower leg in order to reduce reflex mediated over-activity, i.e. spasticity, in calf muscles by inducing reciprocal inhibition.
研究设计
- 研究类型
- Interventional
- 分配方式
- Na
- 干预模型
- Single Group
- 主要目的
- Treatment
- 盲法
- None
入排标准
- 年龄范围
- 18 Years 至 —(Adult, Older Adult)
- 性别
- All
- 接受健康志愿者
- 否
入选标准
- •Eligible participants had
- •suffered a stroke > 12 months earlier
- •were living with hemiplegia affecting the right or the left side of the body including both upper and lower extremity function
- •were able to walk with assistance or independently according to the Functional Ambulatory Categories (Holden 1984) with a score of 2-5
- •activity in upper extremity was limited according to the Action Research Arm test (ARAT) (Nordin 2014) but could perform a grasp and grip movement
- •were > 17 years old, able to understand instructions as well as written and oral study information and could express informed consent
排除标准
- •no detected neural component exceeding the cut off for spasticity according to the Neuroflexor (>
- •4 Newton) in the wrist flexors
- •contractures not compatible with performing the Neurofexor test or walking
- •any other disorder with an impact on sensorimotor function
- •any other severe concomitant disease (such as cancer, cardiovascular, inflammatory or psychiatric disease), uncontrolled epilepsy or blood pressure, major surgery during the last year, any implanted medical devices
- •pregnancy
结局指标
主要结局
Mechanism substudy and Clinical substudy: NeuroFlexor
时间窗: Mechanism study: To assess change, NeuroFlexor data is recorded before, during and 10 minutes after treatment at each session. Clinical study: To assess change Neuroflexor data is collected before and after the 6 week intervention.
Measure related to spasticity: The Neuroflexor device comprises a portable computer-controlled step motor system with a lever arm that generates constant velocity movements of the wrist or ankle. The passive resistive force of the wrist or ankle is recorded by a force transducer. The force is then analyzed off-line and the total resistance is separated into mechanical and a neural components using a neuro-biomechanical computerized model. NeuroFlexor neural component reflecting stretch reflex mediated resistance, represents the main outcome. The NeuroFlexor hand (used in mechanism and clinical substudy) and foot module (used in mechansim substudy only) is a valid method that quantifies and distinguishes the genuine spasticity and the mechanical contributions (viscoelastic and soft tissue components) of the resistance opposing a passive stretch.
次要结局
- Clinical substudy: Barthel Index(Before and after the 6 week intervention to assess change)
- Clinical substudy: the Fugl-Meyer scale(Before and after the 6 week intervention to assess change)
- Clinical substudy: 6 min walk test(Before and after the 6 week intervention to assess change)
- Mechanism substudy: Modified Ashworth scale:(Before and after 60 min of treatment at each session to assess change)
- Clinical substudy: Berg balance scale(Before and after the 6 week intervention to assess change)
- Clinical substudy: A digital hand dynamometer(Before and after the 6 week intervention to assess change)
- Mechanism substudy: Surface electromyography(To assess change sEMG are assessed before and after 60 min of treatment at each session.)
- Clinical substudy: Montreal Cognitive Assessment(Before and after the 6 week intervention to assess change)
- Clinical substudy: 10 meter walk test(Before and after the 6 week intervention to assess change)
- Clinical substudy: Weekly semistructured telephone interview(Weekly during the 6 week intervention)
- Mechanism substudy: Semi structured interview(During the 60 min of treatment at each session)
- Clinical substudy: Modified Ashworth scale(Before and after the 6 week intervention to assess change)
- Clinical substudy: Stroke Impact Scale(Before and after the 6 week intervention to assess change)
- Clinical substudy: Action Research Arm Test(Before and after the 6 week intervention to assess change)
- Clinical substudy: Functional Ambulation Category(Before and after the 6 week intervention to assess change)
研究者
Susanne Palmcrantz
Principal Investigator
Danderyd Hospital
