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SIMULATION BASED DESIGN OF A PEDIATRIC-SIZED HYDRAULIC ANKLE-FOOT ORTHOSIS

机译:小儿液压踝关节矫形器的基于仿真的设计

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Cerebral palsy can cause gait impairments in children that require the prescription of passive ankle-foot orthoses. This project aims to develop a pediatric-sized hydraulic active ankle-foot orthosis with computer-controlled stiffness. The orthosis will allow a clinician to investigate a range of AFO stiffnesses while collecting gait performance metrics to determine the optimal stiffness value for the AFO prescription. The ankle-foot orthosis uses hydraulic technology to generate the large required torques in a light, compact package. The preliminary design uses additive manufacturing to further reduce the weight of the manifolds on the medial and lateral sides of the ankle. The simulation prototype of the design illustrated that the orthosis should be capable of generating 91 Nm of ankle torque and a maximum angular velocity of 483 °/sec. The device will be a valuable resource in the clinic, saving time and resources in the AFO prescription process while improving the healthcare of the patient.
机译:脑瘫可导致需要被动脚踝矫形器处方的儿童的步态障碍。该项目旨在开发一种具有计算机控制的刚度的儿科大小液压主动踝足矫形器。矫形器将允许临床医生在收集步态性能指标的同时调查一系列AFO刚度,以确定AFO处方的最佳刚度值。踝足矫形器采用液压技术,以轻巧紧凑的包装产生所需的大扭矩。初步设计使用增材制造以进一步减轻脚踝内侧和外侧上歧管的重量。设计的模拟原型说明矫形器应能够产生91 Nm的踝关节扭力和483°/ sec的最大角速度。该设备将成为临床上的宝贵资源,在改善AFO处方过程中的时间和资源的同时改善患者的医疗保健。

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