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1.
J Neural Eng ; 13(1): 016002, 2016 Feb.
Artículo en Inglés | MEDLINE | ID: mdl-26643959

RESUMEN

OBJECTIVE: The ease of use and number of degrees of freedom of current myoelectric hand prostheses is limited by the information content and reliability of the surface electromyography (sEMG) signals used to control them. For example, cross-talk limits the capacity to pick up signals from small or deep muscles, such as the forearm muscles for distal arm amputations, or sites of targeted muscle reinnervation (TMR) for proximal amputations. Here we test if signals recorded from the fully implanted, induction-powered wireless Myoplant system allow long-term decoding of continuous as well as discrete movement parameters with better reliability than equivalent sEMG recordings. The Myoplant system uses a centralized implant to transmit broadband EMG activity from four distributed bipolar epimysial electrodes. APPROACH: Two Rhesus macaques received implants in their backs, while electrodes were placed in their upper arm. One of the monkeys was trained to do a cursor task via a haptic robot, allowing us to control the forces exerted by the animal during arm movements. The second animal was trained to perform a center-out reaching task on a touchscreen. We compared the implanted system with concurrent sEMG recordings by evaluating our ability to decode time-varying force in one animal and discrete reach directions in the other from multiple features extracted from the raw EMG signals. MAIN RESULTS: In both cases, data from the implant allowed a decoder trained with data from a single day to maintain an accurate decoding performance during the following months, which was not the case for concurrent surface EMG recordings conducted simultaneously over the same muscles. SIGNIFICANCE: These results show that a fully implantable, centralized wireless EMG system is particularly suited for long-term stable decoding of dynamic movements in demanding applications such as advanced forelimb prosthetics in a wide range of configurations (distal amputations, TMR).


Asunto(s)
Electrodos Implantados , Electromiografía/instrumentación , Movimiento/fisiología , Contracción Muscular/fisiología , Prótesis e Implantes , Tecnología Inalámbrica/instrumentación , Amplificadores Electrónicos , Animales , Brazo/fisiología , Diseño de Equipo , Análisis de Falla de Equipo , Estudios Longitudinales , Macaca , Masculino , Fuerza Muscular/fisiología , Músculo Esquelético/fisiología
2.
Artículo en Inglés | MEDLINE | ID: mdl-21096029

RESUMEN

The acquisition of myoelectric signals from the Musculus deltoideus of a rhesus monkey is described. Such signals are aimed to be used as control signal for an active myoelectric hand prosthesis. For recording, implantable flexible, polyimide-based multi-site microelectrodes were placed epimysially on the muscle. EMG signals were recorded during voluntary goal-directed movements of the arm, and analyzed with respect to signal amplitude and frequency.


Asunto(s)
Miembros Artificiales , Electrodos Implantados , Electromiografía/métodos , Músculos/fisiología , Diseño de Prótesis/métodos , Procesamiento de Señales Asistido por Computador , Animales , Brazo/fisiología , Macaca mulatta , Microelectrodos , Movimiento/fisiología
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