We recently introduced the concept of a new human-machine interface (the myokinetic control interface ) to control hand prostheses. The interface tracks muscle contractions via permanent magnets implanted in the muscles and magnetic field sensors hosted in the prosthetic socket. Previously we showed the feasibility of localizing several magnets in non-realistic workspaces. Here, aided by a 3D CAD model of the forearm, we computed the localization accuracy simulated for three different below-elbow amputation levels, following general guidelines identified in early work. To this aim we first identified the number of magnets that could fit and be tracked in a proximal (T1), middle (T2) and distal (T3) representative amputation, starting from ...
In an attempt to overcome the several limitations of currently available/investigated human-machine ...
In an attempt to overcome the several limitations of currently available/investigated human-machine ...
In an attempt to overcome the several limitations of currently available/investigated human-machine ...
We recently introduced the concept of a new human-machine interface (the myokinetic control interfa...
We recently introduced the concept of a new human-machine interface (the myokinetic control interfac...
We recently introduced the concept of a new human-machine interface (the myokinetic control interfac...
We recently introduced the concept of a new human-machine interface (the myokinetic control interfac...
We recently introduced the concept of a new human-machine interface (the myokinetic control interfac...
We recently introduced the concept of a new human-machine interface (the myokinetic control interfac...
Objective: The quest for an intuitive and physiologically appropriate human-machine interface for th...
Upper limb amputation deprives individuals of their innate ability to manipulate objects. Such disab...
Upper limb amputation deprives individuals of their innate ability to manipulate objects. Such disab...
Upper limb amputation deprives individuals of their innate ability to manipulate objects. Such disab...
Upper limb amputation deprives individuals of their innate ability to manipulate objects. Such disab...
Upper limb amputation deprives individuals of their innate ability to manipulate objects. Such disab...
In an attempt to overcome the several limitations of currently available/investigated human-machine ...
In an attempt to overcome the several limitations of currently available/investigated human-machine ...
In an attempt to overcome the several limitations of currently available/investigated human-machine ...
We recently introduced the concept of a new human-machine interface (the myokinetic control interfa...
We recently introduced the concept of a new human-machine interface (the myokinetic control interfac...
We recently introduced the concept of a new human-machine interface (the myokinetic control interfac...
We recently introduced the concept of a new human-machine interface (the myokinetic control interfac...
We recently introduced the concept of a new human-machine interface (the myokinetic control interfac...
We recently introduced the concept of a new human-machine interface (the myokinetic control interfac...
Objective: The quest for an intuitive and physiologically appropriate human-machine interface for th...
Upper limb amputation deprives individuals of their innate ability to manipulate objects. Such disab...
Upper limb amputation deprives individuals of their innate ability to manipulate objects. Such disab...
Upper limb amputation deprives individuals of their innate ability to manipulate objects. Such disab...
Upper limb amputation deprives individuals of their innate ability to manipulate objects. Such disab...
Upper limb amputation deprives individuals of their innate ability to manipulate objects. Such disab...
In an attempt to overcome the several limitations of currently available/investigated human-machine ...
In an attempt to overcome the several limitations of currently available/investigated human-machine ...
In an attempt to overcome the several limitations of currently available/investigated human-machine ...