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临床试验/NCT02114450
NCT02114450招募中不适用

Human Machine Interface System with the H2 Lower Limb Exoskeleton for Rehabilitation

University of Houston4 个研究点 分布在 1 个国家目标入组 60 人开始时间: 2015年11月20日最近更新:
适应症

试验速览

阶段
不适用
状态
招募中
入组人数
60
试验地点
4
主要终点
Change from baseline in Functional Gait Assessment

研究概览

简要总结

This research study will investigate the use of smart lower limb robotic exoskeleton (developed by the CSIC, Spain) in rehabilitation after stroke. It will compare robotic-assisted rehabilitation with supervised motor practice. Additionally, it will also examine the use of noninvasive scalp electroencephalography (EEG) to learn specific brain wave patterns associated with learning to walk on the powered lower limb exoskeleton. The findings will be used to understand human-robot interaction and to design smart orthotic devices that can be controlled by thought activity and assist those that have lost all or part of their walking abilities.

详细描述

Stroke is the leading cause of neurological disability in the United States and accounts for the poor physical health and the social dysfunction evident in survivors. Gait impairment is a large contributor to long-term disability and ambulatory function in daily living. Many patients, however, lose the ability to walk independently, and furthermore, a large proportion does not regain their normal walking speeds following a stroke. In this context, newer robotic-aided therapeutic tools such as "wearable" lower-limb robotic exoskeletons have been developed, which allow for the user to be augmented by mechanically actuated lower limb joints that can either completely or partially assist movements of the lower limb segments depending on the patient needs.

The H2 exoskeleton (developed by Technaid S.L., Spain) is an example of one such system that has hip, knee and ankle joints actuated for both lower limbs. These devices are very new, and therefore, systematic investigations of therapeutic benefits of these devices are lacking in the field. Further, the nature of plasticity in the brain triggered by wearing and training such exoskeletons is unknown. In this exploratory research study, the investigators aim to compare robotic-assisted rehabilitation using the H2 exoskeleton with supervised motor practice particularly in terms of functional recovery. Additionally, this study will also examine brain plasticity associated with robotic-assisted training using non-invasive scalp electroencephalography (EEG) and changes in lower limb joint kinematics during robotic-assisted training. Taken together, the findings from this research will be used to understand human-robot interaction and to design smart powered orthotic devices that can be controlled directly by brain activity and assist those that have lost all or part of their walking abilities due to neurological disease or injury. Moreover, this study will systematically track neuroplasticity associated with functional recovery after stroke, which will help determine optimal windows for treatment that would maximize therapeutic benefit. Lastly, it will also help characterize markers of learning to use these new devices, which will be important in the clinical setting for modifying and adapting rehabilitation protocols to suit changing needs of the patient (user).

研究设计

研究类型
Interventional
分配方式
Randomized
干预模型
Parallel
主要目的
Basic Science
盲法
Single (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

  • Sub-acute or chronic stroke i.e., interval of at least 3 months or interval of at least 6 months from stroke to time of enrollment, respectively;
  • Cognitive ability to assimilate and participate actively in the treatment protocol (Mini Mental State Examination score > 24 points, out of a total 30 indicating normal cognitive ability);
  • Modified Rankin scale scores 2-4 (Mild-Moderate functional disability post-stroke);
  • Modified Ashworth Scale of Spasticity score <= 2 (ranges from 0-4 with 4 reflecting maximum spasticity);
  • Have no skin integrity issues;
  • Sufficient passive range of motion at the hip (at least 90 deg flexion, 15-20 deg extension), knee (90 deg flexion, complete extension) and ankle (15 deg dorsiflexion, 15 deg plantarflexion);
  • Have no contraindications to standing or walking; able to stand with assistive device for at least 5 minutes, and able to walk with assistive device for 10 m.

排除标准

  • Severe cognitive and/or visual deficit;
  • Hemineglect (determined based on medical record or initial clinical assessment);
  • Severe sensory deficit;
  • Joint contractures of any extremity that limits normal range of motion during ambulation with assistive devices;
  • Skin lesions that may hinder or prevent the application of exoskeleton;
  • Uncontrolled angina;
  • Severe chronic obstructive pulmonary disease;
  • Other medical contraindications; any medical co-morbidities that would prevent standard rehabilitation.
  • Inclusion criteria for healthy, able-bodied participants:
  • Able to understand and sign the consent form
  • Age 18-75 years
  • Exclusion criteria for healthy, able-bodied participants:
  • History of neurological, neuromuscular or physical disability.

结局指标

主要结局

Change from baseline in Functional Gait Assessment

时间窗: Baseline, Post-Intervention (within a week of completion), Follow-up at 2 weeks, Follow-up at 2 months

This scale assesses postural stability during various walking tasks using a 10-item test with each item scored from 0 to 3 (0 = severe impairment and 3 = normal ambulation). This test has high criterion validity to assess functional status in stroke patients, and has been shown to be responsive to measure change.

Change from baseline in Lower limb joint kinematics during walking

时间窗: Baseline, Post-Intervention (within a week of completion), Follow-up at 2 weeks, Follow-up at 2 months

Lower limb joint kinematics (bilateral hip, knee and ankle joints) will be assessed through surface motion sensors placed on the skin during walking. This assessment will help study and characterize subtle changes in lower limb kinematics pre- and post-intervention.

Change from baseline in Fugl-Meyer Assessment - Lower Extremity Motor Function

时间窗: Baseline, Post-Intervention (within a week of completion), Follow-up at 2 weeks, Follow-up at 2 months

This test evaluates and measures recovery in post-stroke hemiplegic patients, used in both clinical and research settings and is one of the most widely used quantitative measures of motor impairment. It uses an ordinal scale for scoring of 17 items for the lower limb component and 7 items on the Balance component of the F-M scale (0;con not perform; 1:can perform partially; 2:can perform fully). The total score ranges from 0 to 34, with higher scores representing better function.

Change in cortical dynamics measured by Electroencephalography (EEG)

时间窗: Each Experimental/Training Session (12 visits) over the 4 week training period

Time and frequency domain analysis will be performed on scalp EEG signals to characterize changes in cortical dynamics, specifically in gait initiation and sensory-motor cortical networks. Additionally, we will also evaluate the extent to which lower limb kinematics during gait can be reconstructed from scalp EEG of the user. This will be used to evaluate the neural basis of changes in lower limb joint motion as well as develop EEG-based brain-machine interfaces to robotic exoskeletons.

次要结局

  • Change from baseline in distance walked during the 6-minute walk test(Baseline, Post-Intervention (within a week of completion), Follow-up at 2 weeks, Follow-up at 2 months)
  • Change from baseline in Berg Balance Scale score(Baseline, Post-Intervention (within a week of completion), Follow-up at 2 weeks, Follow-up at 2 months)
  • Change from baseline in Timed Up and Go Test score(Baseline, Post-Intervention (within a week of completion), Follow-up at 2 weeks, Follow-up at 2 months)
  • Change in robotic measure of performance measured by the H2(Each Experimental/Training Session (12 visits) over the 4 week training period)

研究者

申办方类型
Other
责任方
Principal Investigator
主要研究者

Jose L.Contreras-Vidal, Ph.D.

Hugh Roy and Lillie Cranz Cullen University Professor

University of Houston

研究点 (4)

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