Real-time and offline performance of pattern recognition myoelectric control using a generic electrode grid with targeted muscle reinnervation patients.

IEEE transactions on neural systems and rehabilitation engineering : a publication of the IEEE Engineering in Medicine and Biology Society(2014)

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摘要
Targeted muscle reinnervation (TMR) is a surgical technique that creates myoelectric prosthesis control sites for high-level amputees. The electromyographic (EMG) signal patterns provided by the reinnervated muscles are well-suited for pattern recognition control. Pattern recognition allows for control of a greater number of degrees of freedom (DOF) than the conventional, EMG amplitude-based approach. Previous pattern recognition studies have shown benefit in placing electrodes directly over the reinnervated muscles. Localizing the optimal TMR locations is inconvenient and time consuming. In this contribution, we demonstrate that a clinically practical grid arrangement of electrodes yields real-time control performance that is equivalent to, or better than, the site-specific electrode placement for simultaneous control of multiple DOFs using pattern recognition. Additional findings indicate that grid-like electrode arrangement yields significantly lower classification errors for classifiers with a large number of movement classes ( > 9). These findings suggest that a grid electrode arrangement can be effectively used to control a multi-DOF upper limb prosthesis while reducing the time and effort associated with fitting the prosthesis due to clinical localization of control sites on amputee patients.
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关键词
myoelectric prosthesis control sites,site-specific electrode placement,low classification errors,upper limb amputee,grid-like electrode arrangement,medical control systems,pattern recognition,degrees of freedom,multiple dof,biomedical electrodes,targeted muscle reinnervation patients,electromyographic signal patterns,generic electrode grid,emg amplitude-based approach,prosthetics,medical signal processing,emg signal patterns,pattern recognition myoelectric control,surgical technique,simultaneous control,real-time control performance,electromyography,real-time-offline performance,multidof upper limb prosthesis,targeted muscle reinnervation,electromyography (emg) prosthesis control,muscle,electrode grid,surgery,real-time systems,real time systems,electrodes
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