The human hand is a versatile and complex system with dexterous manipulation capabilities. For the transfer of human grasping capabilities to humanoid robotic and prosthetic hands, an understanding of the dynamic characteristics of grasp motions is fundamental. Although the analysis of grasp synergies, especially for kinematic hand postures, is a very active field of research, the description and transfer of grasp forces is still a challenging task. In this work, we introduce a novel representation of grasp synergies in the force space, so-called force synergies, which describe forces applied at contact locations in a low dimensional space and are inspired by the correlations between grasp forces in fingers and palm. To evaluate this novel ...
Despite the complex nature of human hands, neuroscientific studies suggested a simplified kinematic ...
To adapt to many different objects and tasks, hands are very complex systems with many degrees of fr...
To adapt to many different objects and tasks, hands are very complex systems with many degrees of fr...
The aim of this paper is to derive the synergies subspace of an anthropomorphic robotic hand using t...
The aim of this paper is to derive the synergies subspace of an anthropomorphic robotic hand using t...
The aim of this paper is to derive the synergies subspace of an anthropomorphic robotic hand using t...
The aim of this paper is to derive the synergies subspace of an anthropomorphic robotic hand using t...
This study explores the force synergy of human digits in both static and dynamic cylindrical graspin...
none4noThe aim of this paper is to derive the synergies subspace of an anthropomorphic robotic hand ...
Background: Hand grasp patterns require complex coordination. The reduction of the kinematic dimensi...
Throughout this book, we have described how neuroscientific findings on synergistic organization of ...
Throughout this book, we have described how neuroscientific findings on synergistic organization of ...
Hand prehension requires highly coordinated control of contact forces. The high-dimensional sensorim...
Throughout this book, we have described how neuroscientific findings on synergistic organization of ...
Existing haptic feedback devices are limited in their capabilities and are often cumbersome and heav...
Despite the complex nature of human hands, neuroscientific studies suggested a simplified kinematic ...
To adapt to many different objects and tasks, hands are very complex systems with many degrees of fr...
To adapt to many different objects and tasks, hands are very complex systems with many degrees of fr...
The aim of this paper is to derive the synergies subspace of an anthropomorphic robotic hand using t...
The aim of this paper is to derive the synergies subspace of an anthropomorphic robotic hand using t...
The aim of this paper is to derive the synergies subspace of an anthropomorphic robotic hand using t...
The aim of this paper is to derive the synergies subspace of an anthropomorphic robotic hand using t...
This study explores the force synergy of human digits in both static and dynamic cylindrical graspin...
none4noThe aim of this paper is to derive the synergies subspace of an anthropomorphic robotic hand ...
Background: Hand grasp patterns require complex coordination. The reduction of the kinematic dimensi...
Throughout this book, we have described how neuroscientific findings on synergistic organization of ...
Throughout this book, we have described how neuroscientific findings on synergistic organization of ...
Hand prehension requires highly coordinated control of contact forces. The high-dimensional sensorim...
Throughout this book, we have described how neuroscientific findings on synergistic organization of ...
Existing haptic feedback devices are limited in their capabilities and are often cumbersome and heav...
Despite the complex nature of human hands, neuroscientific studies suggested a simplified kinematic ...
To adapt to many different objects and tasks, hands are very complex systems with many degrees of fr...
To adapt to many different objects and tasks, hands are very complex systems with many degrees of fr...