Design and Validation of Exoskeleton Actuated by Soft Modules toward Neurorehabilitation—Vision-Based Control for Precise Reaching Motion of Upper Limb

نویسندگان

  • Victoria W. Oguntosin
  • Yoshiki Mori
  • Hyejong Kim
  • Slawomir J. Nasuto
  • Sadao Kawamura
  • Yoshikatsu Hayashi
چکیده

We demonstrated the design, production, and functional properties of the Exoskeleton Actuated by the Soft Modules (EAsoftM). Integrating the 3D printed exoskeleton with passive joints to compensate gravity and with active joints to rotate the shoulder and elbow joints resulted in ultra-light system that could assist planar reaching motion by using the vision-based control law. The EAsoftM can support the reaching motion with compliance realized by the soft materials and pneumatic actuation. In addition, the vision-based control law has been proposed for the precise control over the target reaching motion within the millimeter scale. Aiming at rehabilitation exercise for individuals, typically soft actuators have been developed for relatively small motions, such as grasping motion, and one of the challenges has been to extend their use for a wider range reaching motion. The proposed EAsoftM presented one possible solution for this challenge by transmitting the torque effectively along the anatomically aligned with a human body exoskeleton. The proposed integrated systems will be an ideal solution for neurorehabilitation where affordable, wearable, and portable systems are required to be customized for individuals with specific motor impairments.

برای دانلود رایگان متن کامل این مقاله و بیش از 32 میلیون مقاله دیگر ابتدا ثبت نام کنید

ثبت نام

اگر عضو سایت هستید لطفا وارد حساب کاربری خود شوید

منابع مشابه

Design of a 6-DOF upper limb rehabilitation exoskeleton with parallel actuated joints.

In this paper, a 6-DOF wearable upper limb exoskeleton with parallel actuated joints which perfectly mimics human motions is proposed. The upper limb exoskeleton assists the movement of physically weak people. Compared with the existing upper limb exoskeletons which are mostly designed using a serial structure with large movement space but small stiffness and poor wearable ability, a prototype ...

متن کامل

A passively safe cable driven upper limb rehabilitation exoskeleton.

BACKGROUND When using upper limb exoskeletons that assist the movement of physically weak people, safety should be the most important index. OBJECTIVE In this paper, a passively safe, cable-driven upper limb exoskeleton with parallel actuated joints, which perfectly mimics human motions, is proposed. METHODS Compared with the existing upper limb exoskeletons which are mostly designed only c...

متن کامل

Upper limb evaluation with robotic exoskeleton. Normative values for indices of accuracy, speed and smoothness.

BACKGROUND Robotic rehabilitation devices for upper limb function (ULF) provide global indicators of a patient's ability, but the temporal evolution of motion related to motor control is disregarded. OBJECTIVE To determine normative values for indices of accuracy, speed and smoothness in the evaluation of upper limb function. METHODS Twenty-five healthy individuals performed the Armeo®Sprin...

متن کامل

Development and Control of a 'Soft-Actuated' Exoskeleton for Use in Physiotherapy and Training

Full or partial loss of function in the upper limb is an increasingly common due to sports injuries, occupational injuries, spinal cord injuries, and strokes. Typically treatment for these conditions relies on manipulative physiotherapy procedures which are extremely labour intensive. Although mechanical assistive device exist for limbs this is rare for the upper body. In this paper we describe...

متن کامل

Towards the Development of Advanced Exoskeletons for Supporting the Human Activities

Exoskeletons find application in many fields and can be divided into three main categories: 1) haptic interfaces; 2) power amplifiers; 3) rehabilitation and assistance systems. A number of research groups have developed a number of robotic solutions for supporting the motor activities of the upper limb by integrating advanced technologies in terms of actuation, sensors, control and mechanisms. ...

متن کامل

ذخیره در منابع من


  با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید

عنوان ژورنال:

دوره 11  شماره 

صفحات  -

تاریخ انتشار 2017