Portable take-home system enables proportional control and high-resolution data logging with a multi-degree-of-freedom bionic arm

MR Brinton, E Barcikowski, T Davis… - Frontiers in Robotics …, 2020 - frontiersin.org
Frontiers in Robotics and AI, 2020frontiersin.org
This paper describes a portable, prosthetic control system and the first at-home use of a
multi-degree-of-freedom, proportionally controlled bionic arm. The system uses a modified
Kalman filter to provide 6 degree-of-freedom, real-time, proportional control. We describe (a)
how the system trains motor control algorithms for use with an advanced bionic arm, and (b)
the system's ability to record an unprecedented and comprehensive dataset of EMG, hand
positions and force sensor values. Intact participants and a transradial amputee used the …
This paper describes a portable, prosthetic control system and the first at-home use of a multi-degree-of-freedom, proportionally controlled bionic arm. The system uses a modified Kalman filter to provide 6 degree-of-freedom, real-time, proportional control. We describe (a) how the system trains motor control algorithms for use with an advanced bionic arm, and (b) the system's ability to record an unprecedented and comprehensive dataset of EMG, hand positions and force sensor values. Intact participants and a transradial amputee used the system to perform activities-of-daily-living, including bi-manual tasks, in the lab and at home. This technology enables at-home dexterous bionic arm use, and provides a high-temporal resolution description of daily use—essential information to determine clinical relevance and improve future research for advanced bionic arms.
Frontiers
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