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Visual Augmentation Through Virtual Reality to Rehabiliate the Hand after Stroke

Visual Augmentation Through Virtual Reality to Rehabiliate the Hand after Stroke
通过虚拟现实进行视觉增强以康复中风后的手部
批准号:
7915496
负责人:
Eugene Tunik
金额:
$13.64万
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-09-01 至 2014-08-31

项目摘要

项目成果

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中文摘要
翻译
描述(由申请人提供):该项目的驱动力反映了开发有科学依据、经过经验测试和可获得的治疗方法的需要,以最大限度地提高中风后恢复手功能的康复结果。这位候选人的短期目标是测试一套基于神经科学和运动学习原理的新干预措施,以减少中风后的损伤和提高手功能。他的长期目标是使这些干预措施广泛适用于诊所以外环境中的中风患者。研究项目:恢复手的功能(手指个性化、精确握力和力量产生)是中风后最令人望而生畏的,也是最不受关注的。应试者将把虚拟现实中特定的视觉反馈与损伤类型结合起来,以测试:1)将视觉反馈集中在相关的运动错误上是否会恢复手指的个性化;2)时间锁定在运动指令上的适当的视觉反馈将有效地塑造更好的手协调模式;3)虚拟镜像视觉反馈是否可以减少手部瘫痪。职业发展计划:应聘者有很强的基础科学家(运动控制)和理疗师的背景。这个指导项目将使他能够发展成为一名独立的临床研究人员。他将在6个领域进行密集培训:1)中风病理学,2)运动学习在中风中的应用,3)作为治疗交付工具的虚拟现实,4)作为神经可塑性分析工具的TMS,5)格兰茨基,以及6)临床研究中的生物统计学。研究环境:UMDNJ和哥伦比亚大学(候选人的和导师的机构)的资源和支持是优秀的。UMDNJ已经将候选人从教学中解放出来,将至少80%的时间投入到这个项目中&每周三天在导师的实验室里。世界公认的专家将组成导师团队。这些成分应该会让他处于一个独特的位置,发展成为一名强大而独立的临床研究人员。 公共卫生相关性:这个多学科项目融合了生物医学工程、康复、神经科学和运动学习。所获得的知识将对公共卫生产生深远的影响:1)描述中风后大脑重组的潜力,2)使中风患者更容易进行干预(通过将这种方法应用于家庭系统),以及3)提高经经验证明的康复的质量。
英文摘要
DESCRIPTION (provided by applicant): The driving force for this project reflects the need to develop scientifically grounded, empirically tested, and accessible therapies that maximize rehabilitation outcomes for restoring hand function after stroke. The candidate's short-term goal is to test a set of novel interventions, grounded in principles of neuroscience and motor learning, in reducing impairment & increasing hand function after stroke. His long-term goal is to make these interventions broadly accessible to stroke patients in environments beyond the clinic. Research project: Reinstating hand function (finger individuation, precision grip, & force production) is most daunting and least addressed after stroke. The candidate will couple specific visual feedback in virtual reality with impairment type to test if: 1) focusing visual feedback only to pertinent movement errors will restore finger individuation, 2) 'proper' visual feedback time-locked to motor commands will operantly shape better hand coordination patterns, and 3) virtual mirror visual feedback can reduce hand paresis. Career development plan: The candidate has a strong background as a basic scientist (motor control) & physical therapist. This mentored project will enable him to develop into an independent clinical researcher. He will train intensely in 6 areas: 1) stroke pathology, 2) motor learning applications to stroke, 3) virtual reality as a therapy delivery tool, 4) TMS as a neuroplasticity assay tool, 5) grantsmanship, and 6) biostatistics in clinical research. Research environment: The resources & support at UMDNJ & Columbia (the candidate's & mentor's institutions) is outstanding. UMDNJ has freed the candidate from teaching to devote at least 80% of his time to the project & 3 days/week at the mentor's lab. World recognized experts will make up the mentorship team. These ingredients should put him in a unique position to develop into a strong & independent clinical researcher. Public Health Relevance: The multidisciplinary project is a merger of biomedical engineering, rehabilitation, neuroscience, and motor learning. Knowledge gained will have far reaching implications in public health by: 1) describing the potential for brain reorganization after stroke, 2) making intervention more accessible to stroke patients (by adapting this method to a home-based system), and 3) improving the quality of empirically-proven rehabilitation.
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Planning and Updating in Frontoparietal Networks for Grasping
  • 批准号:
    8990509
  • 项目类别:
  • 资助金额:
    $35.12万
  • 财政年份:
    2015
  • 负责人:
    Eugene Tunik
  • 依托单位:
Planning and Updating in Frontoparietal Networks for Grasping
  • 批准号:
    9210127
  • 项目类别:
  • 资助金额:
    $35.08万
  • 财政年份:
    2015
  • 负责人:
    Eugene Tunik
  • 依托单位:
Planning and Updating in Frontoparietal Networks for Grasping
  • 批准号:
    9174304
  • 项目类别:
  • 资助金额:
    $20.77万
  • 财政年份:
    2015
  • 负责人:
    Eugene Tunik
  • 依托单位:
Planning and Updating in Frontoparietal Networks for Grasping
海外基金