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Updated: Sep 9, 2025

Measurement of Dynamic Scapular Kinematics Using an Acromion Marker Cluster to Minimize Skin Movement Artifact
Published on: February 10, 2015
Identifying distinct scapular upward rotation patterns in individuals with upper trapezius-associated neck pain using
Hwa-Ik Yoo1, Ui-Jae Hwang2, Jun-Hee Kim3
1Department of Physical Therapy, Kyungdong University, Wonju 26495, Republic of Korea.
Background:
Previous findings on scapular motion in upper trapezius (UT)-associated neck pain are inconsistent, and binary pain classification may overlook important movement characteristics.
Objectives:
To identify distinct scapular upward rotation patterns in individuals with UT-associated neck pain using unsupervised clustering and to compare the resulting subgroups with healthy controls.
Design:
Exploratory, cross-sectional design.
Method:
Eighty-nine participants with UT-associated neck pain and 25 asymptomatic controls performed unilateral and bilateral scapular upward rotation. A smartphone camera recorded marker trajectories on the acromion process. Marker displacements along the x- and y-axes and the y/x ratio served as input features. K-means clustering was applied, and group differences were assessed.
Results/Findings:
Cluster 1 showed restricted displacement and elevated y/x ratios; Cluster 2 displayed excessive displacement with normal y/x ratios. Control values lay between clusters, and pain intensity did not differ by cluster.
Conclusions:
Smartphone-based clustering reveals hypomobile and hypermobile scapular phenotypes, supporting personalized assessment. This classification could potentially help clinicians who seek to assess how both excessive and restricted scapular motions may contribute to UT-associated neck pain. Future studies should validate these clusters in larger samples and incorporate three-dimensional kinematics.
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