Journal of Electromyography and Kinesiology
Volume 20, Issue 2 , Pages 199-205, April 2010

Scapulothoracic motion and muscle activity during the raising and lowering phases of an overhead reaching task

Rehabilitation Sciences Research Laboratory, Department of Physical Therapy and Rehabilitation Sciences, Drexel University, 245 North 15th Street MS 502, PA 19102-1192, USA

Received 6 January 2009; received in revised form 25 February 2009; accepted 1 April 2009. published online 30 April 2009.

Abstract 

Scapulothoracic muscle activity is essential for normal scapulothoracic motion. While previous research has furthered the understanding of scapulothoracic motion and muscle activity during the raising phase of motion, a gap exists with respect to the lowering phase. The purpose of this study was to compare scapulothoracic motion and scapulothoracic muscle activity between the raising and lowering phases of an overhead reaching task. Twenty healthy subjects volunteered to participate in the study. Three-dimensional scapulothoracic motion was collected using an electromagnetic device. Surface electromyography (EMG) was used to assess muscle activity from the upper trapezius, lower trapezius, and serratus anterior muscles. Overall scapulothoracic motion was similar for the raising and lowering phases of the overhead reaching task. However, significantly lower EMG amplitude values existed during the lowering phase across all muscles. Less muscle activity during the lowering phase may reflect differing neuromuscular control strategies between arm raising and lowering. These findings suggest that scapulothoracic muscle activation levels during eccentric contractions may be closer to an activation threshold below which their ability to control scapulothoracic motion may be compromised subsequently leading to altered scapulothoracic motion (scapular dyskinesis). This provides a possible explanation for why scapular dyskinesis is more notable during the lowering phase of motion.

Keywords: Shoulder, Scapula, Kinematics, Electromyography

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PII: S1050-6411(09)00060-1

doi:10.1016/j.jelekin.2009.04.001

Journal of Electromyography and Kinesiology
Volume 20, Issue 2 , Pages 199-205, April 2010