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临床试验/NCT03817086
NCT03817086已完成不适用

Combining Physical and Mental Practice for the Rehabilitation of Upper Extremity Movement Impairments Secondary to Traumatic Brain Injury

Kessler Foundation1 个研究点 分布在 1 个国家目标入组 19 人开始时间: 2017年6月28日最近更新:
适应症
干预措施

试验速览

阶段
不适用
状态
已完成
发起方
入组人数
19
试验地点
1
主要终点
Change in resting state function connectivity

研究概览

简要总结

Traumatic Brain Injury (TBI)patients often suffer from loss of muscle strength in the hand and foot, decrease in coordination and high muscle tone (spasticity). In this study, investigators seek to compare how two different training programs can improve the coordination and symptoms of fatigue in individuals with movement deficits secondary to TBI. Using brain imaging, the study will also investigate changes in brain structure and activity associated with hand movement.

详细描述

Moderate and severe Traumatic Brain Injury (TBI) commonly causes upper extremity physical impairments that persist even after years of injury; these deficits are attributed to damage in brain structure and changes in structural and functional connectivity. Bimanual coordination deficits and muscle weakness have a significant impact on TBI survivors' well-being, and conventional therapy did not provide high success in treating these two issues. The investigators relate this lag in efficiency to two main reasons: 1) absence of outcome measures to quantify these deficits in a clinical setting, and 2) mental and cognitive fatigue and short attention span in TBI survivors, which limits the feasibility to enroll TBI survivors in intensive training protocols.

The investigators long-term goal is to provide effective rehabilitation training to help TBI survivors in regaining proper bimanual coordination of hand movement and higher hand muscles' strength. Mental practice includes motor imagery and action observation, and neural imaging studies have shown that both motor imagery and action observation share similar neural mechanism as movement execution. In addition, interventional studies have shown success in combining physical and mental practice to improve motor function of stroke survivors, and it does not induce muscle fatigue.

Hence, the first aim of this pilot study is to compare the therapeutic efficacy of combining physical practice with mental practice (motor imagery and action observation) (MP) versus physical practice only with action observation (PP) alone to improve hand bimanual coordination and muscle strength of TBI survivors. Twenty subjects will be randomly and equally assigned to either of two training groups. Maximum Voluntary Contraction (MVC), Reaction Time (RT), and Percent of Error in Matching (PEM) a Target will be used as primary outcome measures in addition to functional-based measures (Wolf Motor Function Test WMFT). In addition, activation maps (functional MRI data) will be established for the brain neural networks before and after training. The investigator's second aim is to study if either or both interventions (MP and PP) induce reorganization in brain activity and in functional (at rest) and effective (during a task) connectivity.

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
Single (Participant)

入排标准

年龄范围
20 Years 至 60 Years(Adult)
性别
All
接受健康志愿者
否

入选标准

  • •between the ages of 20 to 60 years old.
  • •have been diagnosed with a moderate to severe Traumatic Brain Injury.
  • •must have had the injury more than 12 months ago.
  • •have problems controlling my arm movements.
  • •right handed.
  • •speak and understand English.
  • •willing and able to travel to Kessler Foundation in West Orange, NJ for the 3 testing sessions and the 12 sessions of intervention.
  • •must have stable health with no expected medication changes for the next 4 months.
  • •able to understand instructions that are part of the testing and intervention.

排除标准

  • •have had a penetrating Traumatic Brain Injury.
  • •have severe spasticity (stiffness and tightness in my muscles) as determined by study staff.
  • •have had other brain injuries or illnesses in addition to the Traumatic Brain Injury (for example, epilepsy, MS).
  • •use illegal substances at this time, like drugs
  • •have had a brain injury that was non-traumatic such as a stroke or brain tumor.
  • •am enrolled in another research study that is likely to affect my participation in this research study.
  • •have a history of psychiatric illness (for example, bipolar disorder, schizophrenia, or psychosis).

研究组 & 干预措施

Hand coordination and mental practice

Experimental

In a total of 12 training sessions (days), 3 sessions per week over 4 weeks, participants practice physical in-phase and out-of-phase movement of both limbs for 40 minutes. Every 10 minutes, participants get a 2 minutes break during which the participants are asked to mentally imagine doing the task with an action observation of perfect performance.

干预措施: Hand coordination and mental practice (Behavioral)

Hand coordination and action observation

Active Comparator

In a total of 12 training sessions (days), 3 sessions per week over 4 weeks, participants practice physical in-phase and out-of-phase movement of both limbs for 40 minutes. Every 10 minutes, participants get a 2 minutes break during which the participants are asked to observe a visual feedback of performance.

干预措施: Hand coordination and action observation (Behavioral)

结局指标

主要结局

Change in resting state function connectivity

时间窗: Pretest (before training), Posttest (immediately after end of training)

connectivity between sensorimotor and attention network at rest

Change in brain structural connectivity (DTI)

时间窗: Pretest (before training), Posttest (immediately after end of training)

cerebrospinal tract connectivity

Change in Maximum voluntary contraction

时间窗: Pretest (before training), Posttest (immediately after end of training), Retention test (3 weeks after end of training)

maximum force exerted by each hand during squeezing a handgrip force sensor

Change in wolf motor function test

时间窗: Pretest (before training), Posttest (immediately after end of training), Retention test (4 weeks after end of training)

assessment of upper extremity function

Change in Reaction Time

时间窗: day 1, day 2, day 3, day 4, day 5, day 6, day 7, day 8, day 9, day 10, day 11, day 12

Reaction time is the time between real movement, and the time participant was instructed to move. This reaction time will be recorded for every training trial. The average of reaction time in each training day (total 12) will be used to examine the change in performance (slope) across the 12 training days, from day 1 until day 12 of the intervention.

Change in Percent of Error in force matching

时间窗: day 1, day 2, day 3, day 4, day 5, day 6, day 7, day 8, day 9, day 10, day 11, day 12

Percent of error is the mismatch between the force exerted by the participant and the required force as per the instructions in each training trial. This Percent of Error will be recorded for every training trial. The average of errors in each training day (total 12) will be used to examine the change (slope) in performance across the 12 sessions (days) of the intervention.

Change in within-brain effective connectivity

时间窗: Pretest (before training), Posttest (immediately after end of training)

connectivity between sensorimotor and attention network during inphase and out-phase hand coordination task

次要结局

  • trail making test(Pretest (before training), Posttest (immediately after end of training), Retention test (3 weeks after end of training))
  • stroop effect test(Pretest (before training), Posttest (immediately after end of training), Retention test (3 weeks after end of training))

研究者

发起方
Kessler Foundation
申办方类型
Other
责任方
Sponsor

研究点 (1)

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