Effects of Remote Ischemic Conditioning on Bimanual Skill Learning, Bimanual Coordination, and Corticospinal Excitability in Children With Unilateral Cerebral Palsy
试验速览
- 阶段
- 不适用
- 状态
- 已完成
- 入组人数
- 51
- 试验地点
- 2
- 主要终点
- Change in Resting and Active Motor Thresholds
研究概览
简要总结
Unilateral cerebral palsy (UCP) is a leading cause of childhood disability. An early brain injury impairs the upper extremity function, bimanual coordination, and impacts the child's independence. The existing therapeutic interventions have higher training doses and modest effect sizes. Thus, there is a critical need to find an effective priming agent to enhance bimanual skill learning in children with UCP. This study aims to determine the effects of a novel priming agent, remote ischemic conditioning (RIC), when paired with intensive bimanual skill training to enhance bimanual skill learning and to augment skill dependent plasticity in children with UCP.
详细描述
Ischemic conditioning (IC) is a phenomenon of protecting the target organ from ischemia by directly exposing it to brief episodes of sublethal ischemia. RIC is a clinically feasible way of performing IC where episodes of ischemia and reperfusion are delivered with cyclic inflation and deflation of a blood pressure cuff on the arm or leg. Pre-clinical and preliminary clinical trials in humans show neuroprotective effects of RIC. Investigators prior work has shown that when paired with motor training, RIC enhances motor learning in healthy individuals. Based on these diversified benefits of RIC, the central hypothesis is that the multifactorial mechanisms of RIC can be harnessed as a priming agent to enhance motor learning and augment neuroplasticity in children with UCP. The Specific Aims are: 1) to determine the effects of RIC + training on bimanual skill performance, and 2) to determine the effects of RIC + training on corticospinal excitability in children with UCP. In this triple blind, randomized controlled trial, 30 children with UCP, ages 6-16 years will first undergo bimanual speed stack performance, functional upper extremity, and Transcranial Magnetic Stimulation assessments. Children will then undergo RIC/Sham conditioning plus training. Investigators will deliver RIC/sham conditioning via cyclic inflation and deflation of a pressure cuff on the paretic arm using a standard protocol. Training will involve 5 days (15 trials/day) of bimanual speed stack training and intensive bimanual training using hand arm bimanual intensive therapy (HABIT) with a standard dose of 6 hours/day for 5 days. The children will perform the same baseline assessments post-intervention. Investigators hypothesize that compared to sham conditioning + training, RIC + training will significantly enhance: 1) bimanual skill performance (decrease in movement time (sec) to complete bimanual speed stack task), 2) bimanual function (increase in the Assisting Hand Assessment scores), 3) cortical excitability in the ipsilesional primary motor cortex (M1) (larger amplitude of motor evoked potentials and lower resting or active motor thresholds), and 4) reduce motor cortex inhibition (reduced short-interval intracortical inhibition and increase in intracortical facilitation in ipsilesional M1). The long-term goal is to develop effective interventions to improve function of children with UCP. Outcomes of this project will provide critical ingredients for designing Phase II trials that will determine the effects of RIC combined with different dose of intensive behavioral interventions to improve functional outcomes in children with UCP.
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 are masked to group assignment (RLIC vs. Sham conditioning) and the assessor will be masked to group assignment of the participants.
入排标准
- 年龄范围
- 6 Years 至 16 Years(Child)
- 性别
- All
- 接受健康志愿者
- 否
入选标准
- •Children diagnosed with unilateral cerebral palsy, ages 6-16 years
- •Manual Ability Classification System (MACS) levels I-III
- •Ability to complete a stack of 3 cups in 2 minutes
- •Mainstream in school and has sufficient cognition to follow the experiment instructions
排除标准
- •Children with other developmental disabilities such as autism, developmental coordination disorders, etc.
- •Children with absent active motor threshold
- •Children with cognitive deficits or communication problem
- •Children with known cardiorespiratory and vascular dysfunctions
- •Children with metabolic disorders, neoplasm, hydrocephalus
- •Children who are receiving other adjunct therapies such as rTMS and tDCS
- •Children with seizures and on anti-seizure medications
- •Children with metal implants and incompatible medical devices for MRI scans
结局指标
主要结局
Change in Resting and Active Motor Thresholds
时间窗: Baseline and 1 week
The minimum intensity of the stimulator output required to produce an MEP of \> 50 μV will be determined using maximum-likelihood parameter estimation by a sequential testing (ML-PEST) algorithm from the lesioned and non-lesioned cortex. Greater reduction in resting and active motor threshold from pre- to post-intervention indicates greater corticospinal excitability.
Change in Stimulus-response curves
时间窗: Baseline and 1 week
Suprathreshold intensities of 110%, 120%, 130%, 140%, and 150% of resting motor threshold will be administered randomly on the lesioned and non-lesioned cortex. Greater motor evoked potential response at each of these intensities indicate greater corticospinal excitability.
Change in Assisting Hand Assessment
时间窗: Baseline and 1 week
Assisting Hand Assessment assesses bimanual coordination and affected hand function. A 5-point change from pre- to post-intervention is considered a clinically meaningful improvement.
Change in Bimanual Task Performance
时间窗: Baseline and 1 week
The time (seconds) to complete each trial of cup stack, which will be averaged across three trials. This will be measured at visit 1 (pre-) and visit 7 (post-intervention). Smaller time to complete the task indicates better performance.
次要结局
- Change in Balance performance(Baseline and 1 week)
- Change in Intracortical Facilitation (ICF)(Baseline and 1 week)
- Change in accelerometry derived variables(Baseline and 1 week)
- Change in Jebsen Hand Function Test (JHFT)(Baseline and 1 week)
- Change in Box and Blocks Test (BBT)(Baseline and 1 week)
- Change in Nine Hole Peg Test (NHPT)(Baseline and 1 week)
- Change in Hand grip and pinch strength(Baseline and 1 week)
- Change in Short-Interval Intracortical Inhibition (SICI)(Baseline and 1 week)
研究者
Swati Manoharrao Surkar
Assistant Professor
East Carolina University
