In this study, we propose a method to estimate the assistive timing requirements for a power-assisted lumbar suit based on upper-body acceleration. Our developed power-assisted suit combines of springs, wires, and an electrical motor to provide efficient assistance. The assistive torque provided by the suit was determined based on a digital human model. The assistive timing using the electrical motor was calculated from the upper-body acceleration measured using two internal accelerometers. Herein, we present the experimental results based on the myoelectricity of a muscle during lifting motions involving three participants acting as caregivers to elderly patients
This study presents an analysis of power exertion for lifting the body's centre of mass (CoM) during...
Back muscle weakness and lower back pain affect the quality of life and productivity at work, and su...
The work presented in the thesis was motivated by the history of cineplasty and aims to create a sup...
This paper presents a new powered suit aiming at reduction of burden of a care giver\u27s waist in t...
[出版社版](c)2007 IEEE. Personal use of this material is permitted. However, permission to reprint/repub...
[出版社版](c)2007 IEEE. Personal use of this material is permitted. However, permission to reprint/repub...
Abstract—In light of Japan’s low birthrate and aging pop-ulation, technology is needed for facilitat...
Powered exoskeletons are gaining more interest in the last few years, as useful devices to provide a...
The purpose of this study is to develop the algorithm which can control muscle power assist robot es...
Recently, power assist suits which support human physical activities have been researched. We are de...
Along with declining birthrate and a growing proportion of elderly, to increase the number of people...
We developed an upper-limb power-assist exoskeleton actuated by pneumatic muscles. The exoskeleton i...
The need for intelligent assistive devices is growing. Due to advances in medicine, people are livin...
To address the occurrence of lumbar spine disease among labor workers who carry heavy objects, a pas...
In this study, we propose a novel power assist control method for a powered exoskeleton without bind...
This study presents an analysis of power exertion for lifting the body's centre of mass (CoM) during...
Back muscle weakness and lower back pain affect the quality of life and productivity at work, and su...
The work presented in the thesis was motivated by the history of cineplasty and aims to create a sup...
This paper presents a new powered suit aiming at reduction of burden of a care giver\u27s waist in t...
[出版社版](c)2007 IEEE. Personal use of this material is permitted. However, permission to reprint/repub...
[出版社版](c)2007 IEEE. Personal use of this material is permitted. However, permission to reprint/repub...
Abstract—In light of Japan’s low birthrate and aging pop-ulation, technology is needed for facilitat...
Powered exoskeletons are gaining more interest in the last few years, as useful devices to provide a...
The purpose of this study is to develop the algorithm which can control muscle power assist robot es...
Recently, power assist suits which support human physical activities have been researched. We are de...
Along with declining birthrate and a growing proportion of elderly, to increase the number of people...
We developed an upper-limb power-assist exoskeleton actuated by pneumatic muscles. The exoskeleton i...
The need for intelligent assistive devices is growing. Due to advances in medicine, people are livin...
To address the occurrence of lumbar spine disease among labor workers who carry heavy objects, a pas...
In this study, we propose a novel power assist control method for a powered exoskeleton without bind...
This study presents an analysis of power exertion for lifting the body's centre of mass (CoM) during...
Back muscle weakness and lower back pain affect the quality of life and productivity at work, and su...
The work presented in the thesis was motivated by the history of cineplasty and aims to create a sup...