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Development of a pediatric lower-extremity gait system

机译:儿科下肢步态系统的开发

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Nationally, approximately 150,000 0-15 year-old children have moderate to severe mobility limitations due to cerebral palsy (CP), spina bifida, perinatal stroke and spinal cord injuries. Many of these children are limited in the amount of school-related and play activities in which they can participate. Mobility disorders have also been linked to increased blood pressure, shorter life expectancy, social stigma, increased rates of depression and an overall decrease in quality of life (Parent, 2011). Among the mobility affecting disorders listed, CP is the most frequently occurring (2 per 1,000 live births) and can carry a significant socioeconomic burden. CDC estimates gauged the lifetime cost associated with care for a person with CP at one million dollars and the combined cost of care for people born in the US in the year 2000 at 11.5 billion dollars. Robotic assisted gait therapy has the potential to significantly impact the health, social interactions and overall development of children with lower limb motor control deficiencies. While powered, lower limb exoskeletons for gait training and rehabilitation are currently available for adults, the tools for children are limited to treadmill or paddle-based systems that are primarily constrained to clinical settings due to their large size. Thus, this project seeks to develop a custom, pediatric powered exoskeleton for young children.
机译:在全国范围内,由于脑性瘫痪(CP),脊柱裂,围产期中风和脊髓损伤,约有15万名0-15岁儿童患有中度至重度活动受限。这些孩子中的许多人受学校参与和参加的娱乐活动的数量有限。行动障碍也与血压升高,预期寿命缩短,社会污名化,抑郁症发病率增加以及生活质量总体下降有关(Parent,2011年)。在列出的影响行动力的疾病中,CP是最常见的疾病(每1000例活产中有2例),并且可能带来巨大的社会经济负担。 CDC估计,护理CP患者的终生成本为一百万美元,而2000年美国出生者的护理总成本为115亿美元。机器人辅助步态治疗可能会严重影响下肢运动控制缺陷儿童的健康,社交互动和整体发育。目前,成人可使用动力,下肢外骨骼进行步态训练和康复,而用于儿童的工具则仅限于跑步机或桨式系统,由于其体积较大,因此主要限于临床环境。因此,该项目旨在为儿童开发定制的小儿动力外骨骼。

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