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Between-day reliability of trunk orientation measured with smartphone sensors during sit-to-stand in asymptomatic individuals

Authors :
Shaylah Gordon
Oliver Kind
Gurpal Singh
Alexandra Wood
Alessio Gallina
Source :
Musculoskeletal Science and Practice. 63:102713
Publication Year :
2023
Publisher :
Elsevier BV, 2023.

Abstract

Trunk kinematics during sit-to-stand is often impaired in individuals with musculoskeletal disorders. Trunk kinematics is commonly assessed in laboratories using motion capture; however, this equipment is often not available outside research centers. Smartphones are widely available and may be a suitable alternative to assess trunk orientation during sit-to-stand remotely.We investigated whether trunk orientation in the sagittal plane during sit-to-stand can be measured reliably between days when collected remotely using smartphones.Cross-sectional study.Forty-three asymptomatic participants performed 15 sit-to-stand movements in two separate sessions remotely over videoconferencing. Trunk orientation was measured using each participant's smartphone. Absolute peak trunk orientation in the sagittal plane was extracted during standing, sitting, stand up and sit down. Relative trunk orientation was calculated as the difference between sitting and stand up, or sitting and sit down. Reliability was assessed using Intraclass Correlation Coefficient (ICCAll measures showed good reliability (ICCSagittal trunk orientation during sitting, standing, and sit-to-stand can be measured reliably when asymptomatic individuals use their own smartphones supervised over videoconferencing. These findings support the use of smartphone sensors for assessing how trunk orientation changes over time, which may assist physiotherapists assess movement patterns of individuals with musculoskeletal disorders remotely.

Details

ISSN :
24687812
Volume :
63
Database :
OpenAIRE
Journal :
Musculoskeletal Science and Practice
Accession number :
edsair.doi.dedup.....9431b73e6c92fb8e354b8042be73df9b
Full Text :
https://doi.org/10.1016/j.msksp.2022.102713