Although human movements are extremely complex, our nervous system is able to implement effective control strategies, leveraging on a generalized simplification approach. Several works described this behavior within the framework of synergies, which can be regarded as basis ingredients for motion generation through dimensionality reduction. Focusing on hand kinematics, this concept allowed to dramatically improve our understanding of the neuro-physiology of hand motor system, offering effective mathematical tools to identify pathological deviations from the physiological case. At the same time, these observations have found a fertile application field in robotics, suggesting simple yet effective manners to design and control artificial syst...
Recent work on the analysis of natural and robotic hands has introduced the notion of postural syner...
In this paper, the problem of in-hand dexterous manipulation has been addressed on the base of post...
In this paper, the postural synergy configuration subspace given by the fundamental eigengrasps of t...
Although human movements are extremely complex, our nervous system is able to implement effective co...
Although human movements are extremely complex, our nervous system is able to implement effective co...
The complexity of robotic hands is needed to adapt devices to the many kinds of tasks, but the large...
Humans are able to intuitively exploit the shape of an object and environmental constraints to achie...
The sensory-motor architecture of human upper limb and hand is characterized by a complex inter-rela...
Postural hand synergies or eigenpostures are joint angle covariation patterns observed in common gra...
abstract: The human hand has so many degrees of freedom that it may seem impossible to control. A po...
To match the richness and complexity of the sensory and motor functionalities of a human hand with a...
Recent work on the analysis of natural and robotic hands has introduced the notion of postural sy...
This review reports the principal solutions proposed in the literature to reduce the complexity of t...
How the human brain controls hand movements to carry out different tasks is still debated. The conce...
Recent work on the analysis of natural and robotic hands has introduced the notion of postural syner...
In this paper, the problem of in-hand dexterous manipulation has been addressed on the base of post...
In this paper, the postural synergy configuration subspace given by the fundamental eigengrasps of t...
Although human movements are extremely complex, our nervous system is able to implement effective co...
Although human movements are extremely complex, our nervous system is able to implement effective co...
The complexity of robotic hands is needed to adapt devices to the many kinds of tasks, but the large...
Humans are able to intuitively exploit the shape of an object and environmental constraints to achie...
The sensory-motor architecture of human upper limb and hand is characterized by a complex inter-rela...
Postural hand synergies or eigenpostures are joint angle covariation patterns observed in common gra...
abstract: The human hand has so many degrees of freedom that it may seem impossible to control. A po...
To match the richness and complexity of the sensory and motor functionalities of a human hand with a...
Recent work on the analysis of natural and robotic hands has introduced the notion of postural sy...
This review reports the principal solutions proposed in the literature to reduce the complexity of t...
How the human brain controls hand movements to carry out different tasks is still debated. The conce...
Recent work on the analysis of natural and robotic hands has introduced the notion of postural syner...
In this paper, the problem of in-hand dexterous manipulation has been addressed on the base of post...
In this paper, the postural synergy configuration subspace given by the fundamental eigengrasps of t...