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临床试验/NCT02856035
NCT02856035已完成不适用

Novel Brain Signal Feedback Paradigm to Enhance Motor Learning After Stroke

VA Office of Research and Development2 个研究点 分布在 1 个国家目标入组 4 人开始时间: 2017年1月1日最近更新:
适应症

试验速览

阶段
不适用
状态
已完成
入组人数
4
试验地点
2
主要终点
Arm Motor Abilities Test Functional Domain (AMAT - F)

研究概览

简要总结

Stroke (795,000/year in the US and 30 million existing stroke survivors in the world) damages brain neural structures that control coordinated upper limb movement. To most effectively target the brain damage, interventions should be directed so as to restore brain control serving coordination of peripheral neuromuscular function. Currently, there is a lack of a transformative intervention strategy, and only limited efficacy is seen in response to neural rehabilitation that is only peripherally-directed (limbs e.g.) or only directed at the brain. This study will employ a novel neural feedback approach with a closed-loop, real-time paradigm to engage and retrain existing brain function after stroke. Real-time functional magnetic resonance imaging (rtfMIR) provides neural feedback with the advantage of precisely identifying the location of brain activity for multiple cognitive and emotional tasks. However, the rtfMRI is costly and precludes motor learning that requires sitting and engaging the upper limb in complex motor tasks during imaging acquisition. In contrast, real-time functional near-infrared spectroscopy (rtfNIRS), although not as spatially precise as rtfMRI, offers a low-cost, portable solution to provide brain neural feedback during motor learning. This proposal will utilize both technologies in a hybrid, sequential motor learning protocol. Moreover, the study protocol will also simultaneously involve both central effective signals (through neural feedback) and peripheral affective signals by employing neutrally-triggered functional electrical stimulation (FES)-assisted coordination practice, which produces peripherally-induced affective signals from muscle and joint receptors. This novel combination intervention protocol will engage the central nervous system, motor effective pathway training along with induction of affective signal production (FES-assisted practice), all of which will be implemented within the framework of evidence-based motor learning principles.

详细描述

This study aims to develop and test an innovative protocol for recovery of wrist extension after stroke, using a combination of rtfMRI, rtfNIRS, FES, and motor learning.

Aim I. Test the innovative coordination training protocol of combination rtfMRI/rtfNIRS central neural feedback and peripherally-directed, neurally-triggered FES-assisted coordination practice implemented within a framework of motor learning principles.

Hypothesis 1. Chronic stroke survivors will show significant improvement in upper limb function in response to the combined rtfMRI/rtfNIRS central neural feedback; peripherally-directed FES-assisted coordination practice of wrist and finger extension; and whole arm/hand motor learning (Primary measure: Pre-/post-treatment change score in Arm Motor Abilities Test - function domain (AMAT - F); secondary measure: Pre/post-treatment change score in Fugl-Meyer upper limb coordination.

研究设计

研究类型
Interventional
分配方式
Na
干预模型
Single Group
主要目的
Device Feasibility
盲法
None

入排标准

年龄范围
21 Years 至 88 Years(Adult, Older Adult)
性别
All
接受健康志愿者

入选标准

  • Cognition sufficiently intact to give valid informed consent to participate.*
  • Sufficient endurance to participate in rehabilitation sessions.
  • Ability to follow 2 stage commands.
  • Medically Stable
  • Age > 21 years.
  • Impaired upper limb function as follows: impaired ability to flex and extend the wrist.
  • At least 5 degrees of wrist flexion and extension of the wrist.
  • Passive ROM of wrist extension of at least 20 degrees.
  • At least 6 months post stroke.

排除标准

  • Metal implants, pacemaker, claustrophobia, inability to operate the MRI patient call button or any other contraindications for MRI.
  • Acute or progressive cardiac (including cardiac arrhythmias), renal, respiratory, neurological disorders or malignancy.
  • Active psychiatric diagnosis or psychological condition, or active drug/alcohol abuse.
  • Lower motor neuron damage or radiculopathy.
  • More than one stroke.
  • Pregnancy (discontinued from the study, if a woman becomes pregnant). * The combined scores for the Aid to Capacity Evaluation (ACE) and Mini-Mental Status Examination (MMSE) as follows:
  • MMSE 24-30 + the ACE score that states 'definitely capable'
  • MMSE 17 - 23 + the ACE score that states 'probably capable'

结局指标

主要结局

Arm Motor Abilities Test Functional Domain (AMAT - F)

时间窗: change score from baseline to post-treatment; approximately 3 months.

AMAT-F is a measure of 13 complex, coordinated tasks used in everyday living: functional normality of movement during the 13 tasks. Minimum clinically important difference (MCID) is 0.44 change score. AMAT-F : Arm Motor Abilities Test, functional domain. minimum = 0 points. maximum = 5 points. 5 points is normal function.

次要结局

  • Change Score From Baseline to Post Treatment for the Fugl Meyer Coordination Scale(from baseline to post-treatment, approximately 3 months)

研究者

申办方类型
Fed
责任方
Sponsor

研究点 (2)

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