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Effects of different movement directions on electromyography recorded from the shoulder muscles while passing the target positions
Authors:Yoshinari Sakaki  Fuminari Kaneko  Kota Watanabe  Takuma Kobayashi  Masaki Katayose  Nobuhiro Aoki  Eriko Shibata  Toshihiko Yamashita
Affiliation:1. Graduate School of Health Sciences, Sapporo Medical University, Sapporo, Japan;2. Second Division of Physical Therapy, School of Health Sciences, Sapporo Medical University, Sapporo, Japan;3. Department of Orthopaedic Surgery, Sapporo Medical University School of Medicine, Sapporo, Japan;4. Department of Rehabilitation, Hitsujigaoka Hospital, Sapporo, Japan
Abstract:PurposeWe compared electromyography (EMG) recorded from the shoulder joint muscles in the same position for different movement directions.MethodsFifteen healthy subjects participated. They performed shoulder elevation from 0° to 120°, shoulder depression from 120° to 0°, shoulder horizontal adduction from ?15° to 105°, and shoulder horizontal abduction from 105° to ?15°. The target positions were 90° shoulder elevation in the 0°, 30°, 60°, and 90° planes (0°, 30°, 60°, and 90° positions). EMG signals were recorded from the supraspinatus (SSP) muscle by fine-wire electrodes. EMG signals from the infraspinatus (ISP), anterior deltoid, middle deltoid, and posterior deltoid muscles were recorded using active surface electrodes.ResultsDuring elevation and horizontal abduction, the SSP showed significantly higher activity than that shown during depression and during horizontal adduction in the 0°, 30°, and 60° positions. During elevation, the ISP showed significantly higher activity than during depression and during horizontal adduction in the 90° position. During horizontal abduction, the ISP showed significantly higher activity than during depression in the 90° position.ConclusionsWhen the movement tasks were performed in different movement directions at the same speed, each muscle showed characteristic activity.
Keywords:Rotator cuff  Shoulder joint  Electromyography  Movement direction  Motion analysis
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