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Perturbation training for enhancing stability and limb support control for fall-risk reduction among stroke survivors

Perturbation training for enhancing stability and limb support control for fall-risk reduction among stroke survivors
用于增强稳定性和肢体支撑控制的扰动训练,以降低中风幸存者跌倒风险
批准号:
9994944
负责人:
Tanvi Bhatt
金额:
$31.88万
依托单位国家:
美国
项目类别:
财政年份:
2016
资助国家:
美国
项目状态:
已结题
起止时间:
2016-09-23 至 2023-07-31

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中文摘要
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英文摘要
The long-term objective of this research is to develop an efficacious training paradigm to enhance stroke survivors' defense mechanisms against falls and possibly reduce healthcare cost. The Centers for Disease Control and Prevention estimates the direct medical cost for fall related injuries to be $34 billion annually. Forty percent to 70% of community-dwelling stroke survivors experience detrimental falls each year and tend to have 1.5 to 4 times higher risk of hip fracture than their healthy counterparts; with only less than 40% of those individuals regaining independent mobility. Falls, thus not only affect activities of daily living but also reduce mobility, increase risk of second stroke and mortality. Despite potential financial and functional implications of falls in this population, health-care personnel are limited in their ability to develop and validate interventions to reduce fall-risk for them. Further emphasis is placed on locomotor training with focus on enhancing paretic limb function. The project design consists of a randomized controlled trial to examine the ability of chronic stroke survivors to acquire, generalize and retain adaptations to slip-perturbation training for not only mitigating fall risk but also improving walking function. It also explores translation of this paradigm to the sub-acute population. The paradigm is novel in that it targets contributions of the paretic vs. non-paretic limbs on fall-risk through a bilateral training paradigm that involves training the non-paretic side first and then paretic to facilitate acquisition of fall-prevention skills on the paretic side, which may otherwise take longer to acquire training effects. The longer-term benefits of such perturbation training, targeting both limbs for reducing falls will be assessed not only in the laboratory but also in real life via wearable sensors, along with improved community walking function. The hypothesis of this study if supported by the results will provide an evidence-supported training protocol to reduce the fall-risk not only in people living with hemiparetic stroke but also among survivors of other acquired unilateral cortical lesions.
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NeuroMuscular Electrical Stimulation to facilitate perturbation-based REACtive balance Training for fall-risk reduction post-stroke: The REACTplusNMES Trial
Center for Health Equity in Cognitive Aging - Joining Population Science and Health Promotion (CHECA)
Neuromechanisms of falls in older adults with MCI: Targeting assessment and training of reactive balance control
Neuromechanisms of falls in older adults with MCI: Targeting assessment and training of reactive balance control
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