A 3D virtual model of the human lower extremity has been developed for the purpose of examining how the neuromuscular system controls the muscles and generates the desired movement. Our virtual knee currently incorporates the major muscles spanning the knee joint and it is used to estimate the knee joint moment. Beside that we developed a graphical interface that allows the user to visualize the skeletal geometry and the movements imparted to it. The purpose of this paper is to describe the design objectives and the implementation of our EMG-driven virtual knee. We finally compared the virtual knee behavior with the torque performed by the test subject in order to obtain a qualitative validation of our model. Within the next future our aim ...
This thesis is a contribution to understanding the biomechanics of human knee control. It attempts t...
This thesis is a contribution to understanding the biomechanics of human knee control. It attempts t...
Now more than ever, progresses in information technology applied to rehabilitation robotics give new...
The work presented in this paper is our first step toward the development of an exoskeleton for huma...
The work presented in this paper is our first step toward the development of an exoskeleton for huma...
In this paper we use motion capture technology together with an electromyography (EMG) driven muscul...
In this paper we use motion capture technology together with an electromyography (EMG) driven muscul...
Exoskeletons represent one of the most important examples of human-oriented robotic devices. This pa...
Exoskeletons represent one of the most important examples of human-oriented robotic devices. This pa...
Current changes in aging demographics poses new challenges: people require to keep their quality of ...
Current prosthetic and rehabilitation devices, used for those who are limbless or born with congenit...
Abstract – In this paper a real-time capable computational model of the human knee is presented. The...
By extracting the moving trajectory of an artificial anatomical knee model (AAKM), this paper presen...
Today the field of neuromuscular simulations is widely used to understand the underlying dynamics of...
By extracting the moving trajectory of an artificial anatomical knee model (AAKM), this paper presen...
This thesis is a contribution to understanding the biomechanics of human knee control. It attempts t...
This thesis is a contribution to understanding the biomechanics of human knee control. It attempts t...
Now more than ever, progresses in information technology applied to rehabilitation robotics give new...
The work presented in this paper is our first step toward the development of an exoskeleton for huma...
The work presented in this paper is our first step toward the development of an exoskeleton for huma...
In this paper we use motion capture technology together with an electromyography (EMG) driven muscul...
In this paper we use motion capture technology together with an electromyography (EMG) driven muscul...
Exoskeletons represent one of the most important examples of human-oriented robotic devices. This pa...
Exoskeletons represent one of the most important examples of human-oriented robotic devices. This pa...
Current changes in aging demographics poses new challenges: people require to keep their quality of ...
Current prosthetic and rehabilitation devices, used for those who are limbless or born with congenit...
Abstract – In this paper a real-time capable computational model of the human knee is presented. The...
By extracting the moving trajectory of an artificial anatomical knee model (AAKM), this paper presen...
Today the field of neuromuscular simulations is widely used to understand the underlying dynamics of...
By extracting the moving trajectory of an artificial anatomical knee model (AAKM), this paper presen...
This thesis is a contribution to understanding the biomechanics of human knee control. It attempts t...
This thesis is a contribution to understanding the biomechanics of human knee control. It attempts t...
Now more than ever, progresses in information technology applied to rehabilitation robotics give new...