Abstract Introduction Regenerative peripheral nerve interfaces (RPNIs) are biological constructs which amplify neural signals and have shown long-term stability in rat models. Real-time control of a neuroprosthesis in rat models has not yet been demonstrated. The purpose of this study was to: a) design and validate a system for translating electromyography (EMG) signals from an RPNI in a rat model into real-time control of a neuroprosthetic hand, and; b) use the system to demonstrate RPNI proportional neuroprosthesis control. Methods Animals were randomly assigned to three experimental groups: (1) Control; (2) Denervated, and; (3) RPNI. In the RPNI group, the extensor digitorum longus (EDL) muscle was dissected free, denervated, transferred...
In recent years many researchers have focused their attention on the development and on the clinica...
With the advancement of electrode and equipment technology, neuroprosthetics have become a promising...
The development of hybrid neuroprosthetic systems (HBSs) linking the human nervous system with artif...
Abstract Introduction Regenerative peripheral nerve i...
Despite significant advancements in neuroprosthetic control strategies, current peripheral nerve int...
Purpose: Although advanced prosthetic devices have the potential to allow fine-motor movements and e...
Background. The purpose of this experiment was to develop a peripheral nerve interface using culture...
Abstract Background Regenerative Peripheral Nerve Int...
Here we present an economical and versatile platform for developing motor control and sensory feedba...
Purpose: Exoskeletons have become a promising device to restore extremity function to those with lim...
Considerable scientific and technological efforts have been devoted to develop neuroprostheses and h...
Amputee patients who have lost a hand or arm are severely impaired in their daily life, as they lose...
This paper intends to provide a critical review of the literature on the technological issues on con...
The restoration of complex hand functions by creating a novel bidirectional link between the nervous...
Abstract—The volitional control of prosthetic devices could be greatly enhanced if the information f...
In recent years many researchers have focused their attention on the development and on the clinica...
With the advancement of electrode and equipment technology, neuroprosthetics have become a promising...
The development of hybrid neuroprosthetic systems (HBSs) linking the human nervous system with artif...
Abstract Introduction Regenerative peripheral nerve i...
Despite significant advancements in neuroprosthetic control strategies, current peripheral nerve int...
Purpose: Although advanced prosthetic devices have the potential to allow fine-motor movements and e...
Background. The purpose of this experiment was to develop a peripheral nerve interface using culture...
Abstract Background Regenerative Peripheral Nerve Int...
Here we present an economical and versatile platform for developing motor control and sensory feedba...
Purpose: Exoskeletons have become a promising device to restore extremity function to those with lim...
Considerable scientific and technological efforts have been devoted to develop neuroprostheses and h...
Amputee patients who have lost a hand or arm are severely impaired in their daily life, as they lose...
This paper intends to provide a critical review of the literature on the technological issues on con...
The restoration of complex hand functions by creating a novel bidirectional link between the nervous...
Abstract—The volitional control of prosthetic devices could be greatly enhanced if the information f...
In recent years many researchers have focused their attention on the development and on the clinica...
With the advancement of electrode and equipment technology, neuroprosthetics have become a promising...
The development of hybrid neuroprosthetic systems (HBSs) linking the human nervous system with artif...