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METHOD AND SYSTEM FOR INTERPRETING NEURAL INTERPLAY INVOLVING PROPRIOCEPTIVE ADAPTATION DURING A DUAL TASK PARADIGM

机译:在双重任务范例中解释涉及互动的神经相互作用的方法和系统

摘要

Collision avoidance and postural stability adjustment may provide an effective dual task paradigm to interpret the effect of proprioceptive adaptation on balance control. However, conventionally tasks are physical tasks performed under supervision in specific set up environments. Embodiments of the present disclosure provide methods and systems for interpreting neural interplay involving proprioceptive adaptation in a lower limb during a dual task paradigm. The disclosed method provides a better interpreting of the neuronal mechanisms underlying adaptation and learning of skilled motor movement and to determine the relationship of lower limb proprioceptive sense and postural stability by simulating integration of a Single Limb Stance (SLS) functionality test for postural stability and a single limb collision avoidance task, in an adaptive Virtual Reality (VR) environment provided to a subject.
机译:避免碰撞和姿势稳定性调节可提供有效的双重任务范例,以解释本体感受适应对平衡控制的影响。但是,常规地,任务是在特定设置环境下在监督下执行的物理任务。本公开的实施例提供了在双重任务范例期间用于解释涉及下肢中的本体感受适应的神经相互作用的方法和系统。所公开的方法提供了更好的解释,以适应和学习熟练的运动运动的神经元机制,并通过模拟单肢姿势(SLS)功能测试的整合来确定下肢本体感受感与姿势稳定性之间的关系,以达到姿势稳定性和稳定性的目的。提供给受试者的自适应虚拟现实(VR)环境中的单肢避免碰撞任务。

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