This paper presents the design procedure of a biomechanical leg, with a passive toe joint, which is capable of mimicking the human walking. This leg has to provide the major features of human gait in the motion trajectories of the hip, knee, ankle, and toe joints. Focus was given to the approach of designing the passive toe joint of the biomechanical leg in its role and effectiveness in performing human like motion. This study was inspired by experimental and theoretical studies in the fields of biomechanics and robotics. Very light materials were mainly used in the design process. Aluminum and carbon fiber parts were selected to design the proposed structure of this biomechanical leg, which is to be manufactured in the Mechanical Lab of th...
Due to the varied needs of persons who have lost a lower limb in their everyday lives, ankle-foot pr...
One of the main challenges in the design of human-like walking robots (useful for service or enterta...
An objective understanding of human foot and ankle function can drive innovations of bio-inspired we...
This project focuses on the actuation of a multi-segment rigid body foot prototype capable of matchi...
This paper presents a human-oriented approach to design the mechanical architecture and the joint co...
Human upright locomotion emerged about 6 million years ago. It is achieved by a complex interaction ...
A passive exoskeleton was designed with the goal of reducing metabolic cost of human walking by augm...
This project focuses on the design and prototyping of a practical, multi-segment rigid body foot mec...
In this study, we present the mechanical design of a prototype of a fully-passive transfemoral prost...
This paper presents a bio-inspired below-knee exoskeleton to assist human walking. Different from th...
This paper presents the design of a novel powered ankle-foot prosthesis with compliant ankle and seg...
This paper is a presentation of a work that consists of considering a novel foot structure for biped...
The knee joint is a complex structure that plays a significant role in the human lower limb for loco...
In this paper, we describe the development of a leg with a rotational joint that mimics the elastic ...
The purpose of this project is the realisation of a prosthetic foot, able to adapt to the different ...
Due to the varied needs of persons who have lost a lower limb in their everyday lives, ankle-foot pr...
One of the main challenges in the design of human-like walking robots (useful for service or enterta...
An objective understanding of human foot and ankle function can drive innovations of bio-inspired we...
This project focuses on the actuation of a multi-segment rigid body foot prototype capable of matchi...
This paper presents a human-oriented approach to design the mechanical architecture and the joint co...
Human upright locomotion emerged about 6 million years ago. It is achieved by a complex interaction ...
A passive exoskeleton was designed with the goal of reducing metabolic cost of human walking by augm...
This project focuses on the design and prototyping of a practical, multi-segment rigid body foot mec...
In this study, we present the mechanical design of a prototype of a fully-passive transfemoral prost...
This paper presents a bio-inspired below-knee exoskeleton to assist human walking. Different from th...
This paper presents the design of a novel powered ankle-foot prosthesis with compliant ankle and seg...
This paper is a presentation of a work that consists of considering a novel foot structure for biped...
The knee joint is a complex structure that plays a significant role in the human lower limb for loco...
In this paper, we describe the development of a leg with a rotational joint that mimics the elastic ...
The purpose of this project is the realisation of a prosthetic foot, able to adapt to the different ...
Due to the varied needs of persons who have lost a lower limb in their everyday lives, ankle-foot pr...
One of the main challenges in the design of human-like walking robots (useful for service or enterta...
An objective understanding of human foot and ankle function can drive innovations of bio-inspired we...