J Korean Phys Ther.  2022 Dec;34(6):283-291. 10.18857/jkpt.2022.34.6.283.

Reliability and Validity of Angle of Trunk Rotation Measurement Using Smartphone and 3D Printing Technology in Scoliosis

Affiliations
  • 1Department of Physical Therapy, Graduate School of Rehabilitation Science, Daegu University, Daegu, Republic of Korea
  • 2Department of Physical Therapy, College of Health Science, Sunmoon University, Asan, Republic of Korea

Abstract

Purpose
The purpose of this study was to compare and analyze the method of measuring the angle of the trunk rotation using a smartphone with 3D smartphone holder compared to a scoliometer, which is a measuring tool used as a method for diagnosing scoliosis in scoliosis patients.
Methods
Angle of trunk rotation was measured in 21 subjects diagnosed with scoliosis. scoliometer measurement method, a smartphone measurement method with a 3D smartphone holder, a smartphone blind measurement method with a 3D smartphone holder, a smartphone measurement method without a smartphone holder, a smartphone blind measurement method without a smartphone holder, and a total of five measurement methods were repeated three times for comparison and analysis.
Results
The smartphone measurement method with a 3D smartphone holder has excellent intra-rater reliability of angle of trunk rotation (Rater A; ICC3, 2 ≥ 0.993, Rater B; ICC3, 2 ≥ 0.992). The smartphone blind measurement method with a 3D smartphone holder has excellent inter-rater reliability of angle of trunk rotation (ICC2, 2 ≥ 0.968). The scoliometer measurement method had the highest validity (r = 0.976) with the smartphone measurement method with a 3D smartphone holder, and the blind measurement method without a smartphone holder had the lowest validity (r = 0.886).
Conclusion
These findings, the angle of trunk rotation measured by the smartphone measurement method with a 3D smartphone holder in scoliosis patients showed high reliability and validity compared to the scoliometer measurement method.

Keyword

Scoliosis; Scoliometer; 3D printing; Smartphone holder
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