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Motor Cortical Correlates of Arm Resting in the Context of a Reaching Task and Implications for Prosthetic Control

Meel Velliste, Scott D. Kennedy, Andrew B. Schwartz, Andrew Whitford, Jeong-Woo Sohn, Angus J. C. McMorland

Year
2014
Citations
59
Access
Open access

Abstract

Prosthetic devices are being developed to restore movement for motor-impaired individuals. A robotic arm can be controlled based on models that relate motor-cortical ensemble activity to kinematic parameters. The models are typically built and validated on data from structured trial periods during which a subject actively performs specific movements, but real-world prosthetic devices will need to operate correctly during rest periods as well. To develop a model of motor cortical modulation during rest, we trained monkeys ( Macaca mulatta ) to perform a reaching task with their own arm while recording motor-cortical single-unit activity. When a monkey spontaneously put its arm down to rest between trials, our traditional movement decoder produced a nonzero velocity prediction, which would cause undesired motion when applied to a prosthetic arm. During these rest periods, a marked shift was found in individual units' tuning functions. The activity pattern of the whole population during rest ( Idle state) was highly distinct from that during reaching movements ( Active state), allowing us to predict arm resting from instantaneous firing rates with 98% accuracy using a simple classifier. By cascading this state classifier and the movement decoder, we were able to predict zero velocity correctly, which would avoid undesired motion in a prosthetic application. Interestingly, firing rates during hold periods followed the Active pattern even though hold kinematics were similar to those during rest with near-zero velocity. These findings expand our concept of motor-cortical function by showing that population activity reflects behavioral context in addition to the direct parameters of the movement itself.

Keywords

KinematicsPopulationContext (archaeology)Computer scienceMotor controlRest (music)Resting state fMRIMotor cortexPsychologyNeuroscience

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