Active Assistive Orthotic System

I. Veneva, D. Chakarov, M. Tsveov, D. Trifonov, E. Zlatanov, Pavel Venev
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Abstract

Active orthosis (exoskeleton) is an assistive device with a wearable structure, corresponding to the natural motions of the human. This chapter focuses on developing an active/assistive orthosis system (AOS) enhancing movement. The AOS design is inspired by the biological musculoskeletal system of human upper and lower limbs and mimics the muscle-tendon-ligament structure. The exoskeleton structure includes left and right upper limb, left and right lower limb, and central exoskeleton structure for human torso and waist and provides support, balance, and control of different segments of the body. The device was fabricated with light materials and powered by pneumatic artificial muscles that provide more than fifteen degrees of freedom for the different joints. The active orthotic systems (AOS) can operate in three modes: motion tracking system with data exchange with virtual reality; haptic and rehabilitation device; and assistive mode with active orthosis in cases of impaired muscles.
主动辅助矫形系统
主动矫形器(外骨骼)是一种具有可穿戴结构的辅助装置,与人体的自然运动相对应。本章的重点是开发一种增强运动的主动/辅助矫形器系统(AOS)。AOS的设计灵感来自于人类上肢和下肢的生物肌肉骨骼系统,并模仿了肌肉-肌腱-韧带结构。外骨骼结构包括左右上肢、左右下肢以及人体躯干和腰部的中央外骨骼结构,对身体的不同部分提供支撑、平衡和控制。该装置由轻质材料制成,由气动人造肌肉提供动力,为不同的关节提供超过15个自由度。主动矫形系统(AOS)可以在三种模式下工作:运动跟踪系统与虚拟现实数据交换;触觉和康复装置;在肌肉受损的情况下,辅助模式与主动矫形器。
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