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Muscle torques and joint accelerations provide more sensitive measures of poststroke movement deficits than joint angles

Ariel B. Thomas, Erienne V. Olesh, Amelia Adcock, Valeriya Gritsenko

Year
2021
Citations
11

Abstract

Functional deficits seen in task performance have biomechanical underpinnings, seen only through the analysis of forces. Our study has shown that estimating muscle moments can quantify with high-sensitivity poststroke deficits in intersegmental coordination. An assessment developed based on this method could help quantify less observable deficits in mildly affected stroke patients. It may also bridge the gap between evidence from studies of constrained or robotically manipulated movements and research with functional and unconstrained movements.

Keywords

Joint (building)Physical medicine and rehabilitationMovement (music)TorqueNeurosciencePsychologyComputer scienceMedicinePhysicsEngineering

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