Uppsats

IMU-Based Posture Monitoring for Rehabilitation Applications

H

Chalmers tekniska högskola / Institutionen för elektroteknik

Publicerad: 2026

Språk: Engelska

Sammanfattning

Accurate assessment of posture is important in rehabilitation-related applications,where abnormal body alignment may contribute to musculoskeletal discomfort, altered movement patterns, and reduced functional performance. Inertial Measurement Units (IMUs) provide a portable and low-cost alternative to laboratory-basedmotion capture systems for posture monitoring.This thesis investigated the accuracy and reliability of IMU-based posture estimation using Movella DOT sensors, with a Qualisys optical motion capture (MoCap)system used as the reference measurement. Four sagittal posture variables were evaluated: pelvic tilt, thorax tilt, thorax–pelvis relative alignment, and forward headposture (FHP). The influence of breathing on thorax-mounted IMU measurementswas investigated, and the feasibility of IMU-based respiration monitoring was alsoexplored.The results demonstrated good agreement between IMU-based posture estimatesand the MoCap reference for pelvic tilt, thorax tilt, and thorax–pelvis alignment,with mean RMSE values of 0.86◦, 1.65◦, and 1.82◦, respectively, and ICC valuesabove 0.96 for all three variables. Forward head posture showed lower agreementand greater inter-subject variability. The comparison between Euler-angle–basedand quaternion-based methods revealed only minor differences under the evaluatedposture conditions. Deep breathing introduced visible oscillations and increasedvariability in thorax-mounted IMU signals, although overall IMU–MoCap agreement remained high. IMU-based respiration monitoring demonstrated moderate tostrong agreement with a respiratory belt reference during deep breathing, but lowerreliability during normal breathing.Overall, the findings indicate that IMU-based sagittal posture estimation is feasiblefor rehabilitation-related posture monitoring, particularly for pelvic and thoracicmeasurements.

Information

Författare
Zhou, Yi
Lärosäte / institution
Chalmers tekniska högskola / Institutionen för elektroteknik
Publiceringsdatum
2026
Uppsatstyp
H
Språk
Engelska

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