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1.
Zhongguo Gu Shang ; 36(6): 591-6, 2023 Jun 25.
Article in Chinese | MEDLINE | ID: mdl-37366106

ABSTRACT

The shoulder joint is the most flexible joint in the body with the largest range of motion, and the movement pattern is more complex. Accurate capture of three-dimensional motion data of the shoulder joint is crucial for biomechanical evaluation. Optical motion capture systems offer a non-invasive and radiation-free method to capture shoulder joint motion data during complex movements, enabling further biomechanical analysis of the shoulder joint. This review provides a comprehensive overview of optical motion capture technology in the context of shoulder joint movement, including measurement principles, data processing methods to reduce artifacts from skin and soft tissues, factors influencing measurement results, and applications in shoulder joint disorders.


Subject(s)
Shoulder Joint , Shoulder , Humans , Motion Capture , Biomechanical Phenomena , Upper Extremity , Movement , Range of Motion, Articular
2.
Article in Chinese | WPRIM (Western Pacific) | ID: wpr-981739

ABSTRACT

The shoulder joint is the most flexible joint in the body with the largest range of motion, and the movement pattern is more complex. Accurate capture of three-dimensional motion data of the shoulder joint is crucial for biomechanical evaluation. Optical motion capture systems offer a non-invasive and radiation-free method to capture shoulder joint motion data during complex movements, enabling further biomechanical analysis of the shoulder joint. This review provides a comprehensive overview of optical motion capture technology in the context of shoulder joint movement, including measurement principles, data processing methods to reduce artifacts from skin and soft tissues, factors influencing measurement results, and applications in shoulder joint disorders.


Subject(s)
Humans , Shoulder , Motion Capture , Biomechanical Phenomena , Upper Extremity , Shoulder Joint , Movement , Range of Motion, Articular
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