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Development of a Dynamic Oriented Rehabilitative Integrated System (DORIS) and Preliminary Tests

机译:动态导向的康复综合系统(DORIS)的开发和初步测试

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摘要

Moving platforms were introduced in the field of the study of posturography since the 1970s. Commercial platforms have some limits: a limited number of degrees of freedom, pre-configured protocols, and, usually, they are expensive. In order to overcome these limits, we developed a robotic platform: Dynamic Oriented Rehabilitative Integrated System (DORIS). We aimed at realizing a versatile solution that can be applied both for research purposes but also for personalizing the training of equilibrium and gait. We reached these goals by means of a Stewart platform that was realized with linear actuators and a supporting plate. Each actuator is provided by an ad hoc built monoaxial load cell. Position control allows a large range of movements and load cells measure the reactive force applied by the subject. Transmission Control Protocol/Internet Protocol (TCP/IP) guarantees the communication between the platform and other systems. We integrated DORIS with a motion analysis system, an electromyography (EMG) system, and a virtual reality environment (VR). This integration and the custom design of the platform offer the opportunity to manipulate the available information of the subject under analysis, which uses visual, vestibular, and plantar feet pressure inputs. The full access to the human movements and to the dynamic interaction is a further benefit for the identification of innovative solutions for research and physical rehabilitation purposes in a field that is widely investigated but still open.
机译:自1970年代以来,移动平台被引入到姿势学研究领域。商业平台有一些局限性:有限的自由度,预先配置的协议,而且通常很昂贵。为了克服这些限制,我们开发了一个机器人平台:动态导向康复集成系统(DORIS)。我们旨在实现一种通用解决方案,该解决方案既可用于研究目的,也可用于个性化平衡和步态训练。我们通过Stewart平台实现了这些目标,该平台通过线性执行器和支撑板实现。每个执行器均由一个特制的单轴称重传感器提供。位置控制可实现大范围的移动,并且称重传感器可测量对象施加的反作用力。传输控制协议/ Internet协议(TCP / IP)确保平台与其他系统之间的通信。我们将DORIS与运动分析系统,肌电图(EMG)系统和虚拟现实环境(VR)集成在一起。平台的这种集成和定制设计提供了机会,可以使用视觉,前庭和足底压力输入来操纵被分析对象的可用信息。充分利用人体运动和动态交互作用,对于在研究广泛但仍未解决的领域中为研究和身体康复目的确定创新解决方案提供了进一步的好处。

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