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Effect Of Arm Deweighting Using End-Effector Based Robotic Devices On Muscle Activity

Justin Fong, Vincent Crocher, Raneem Haddara, David C. Ackland, Mary P. Galea, Ying Tan, Denny Oetomo

Year
2018
Citations
2

Abstract

Deweighting of the limb is commonly performed for patients with a neurological injury, such as stroke, as it allows these patients with limited muscle activity to perform movements. Deweighting has been implemented in exoskeletons and other multi-contact devices, but not on an end-effector based device with single contact point between the assisting robot and the human limb being assisted. This study inves-tigates the effects of deweighting using an end-effector based device on healthy subjects. The muscle activity of five subjects was measured in both static postures and dynamic movements. The results indicate a decrease in the activity of muscles which typically act against gravity - such as the anterior deltoid and the biceps brachii - but also suggest an increase in activity in muscles which act with gravity - such as the posterior deltoid and the lateral triceps. This can be explained by both the change in required muscle-generated torques and a conscious change in approach by the participants. These observations have implications for neurorehabilitation, particularly with respect to the muscle activation patterns which are trained through rehabilitation exercises.

Keywords

NeurorehabilitationBicepsPhysical medicine and rehabilitationDeltoid curveRobot end effectorMedicineElectromyographyRehabilitationPowered exoskeletonDeltoid muscle

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