How well do computational effort proxies represent metabolic cost of reaching?

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Abstract Summary
In this study we compare common neuromechanical proxies for effort to the metabolic cost of reaching. We present a biomechanically accurate neuromuscular model of the arm, developed to estimate effort costs through measured metabolic cost in eight subjects making arm reaching movements. Neural drive squared and a model of muscle energetic expenditure are best at representing the metabolic cost of arm reaching.
Abstract ID:
UCB1600
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