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Reliability of Ultrasonography to Assess Spinal Compression During Heavy Load Carriage

Title: Reliability of Ultrasonography to Assess Spinal Compression During Heavy Load Carriage
Authors: Walters, Sherrilyn; Hoffman, Ben; Coltman, Celeste E.; Walters, Lester; Iqbal, Muneeb; Mills, Dean E.
Publisher Information: John Wiley & Sons
Publication Year: 2026
Collection: University of Southern Queensland: USQ ePrints
Subject Terms: spinal compression; axial loading; back injury; back pain; heavy load carriage; lower back; lumbar vertebrae; ultrasonography; spine; posture
Description: Background Back pain and spinal injury are leading contributors to premature retirement, particularly in physically demanding occupations. Direct and practical methods of spinal assessment are needed to evaluate interventions aimed at reducing spinal loading and injury risk. Ultrasonography has been reliably used to estimate spinal compression via intervertebral disc height, but its reliability for measuring inter-transverse process distances under load has not been established. Methods Eleven healthy adults underwent ultrasonographic measurement of inter-transverse process distances at each lumbar level (L1–L5), and the total lumbar distance under four loading conditions: (1) immediately on standing while unloaded, (2) after 15 min of unloaded standing, (3) after 15 min of standing loaded with a 25 kg weighted vest, and (4) after 30 min of loaded standing. These procedures were repeated after 1–7 days. Inter-rater, within-visit, and between-visit reliability were assessed using intraclass correlation coefficients (ICCs) and coefficients of variation (CV). Bland–Altman plots were used to assess agreement. A one-way analysis of variance was used to determine the effects of each loading condition on inter-transverse process distances. Results Inter-rater, within-visit, and between-visit reliability was good to excellent with ICCs between 0.81 and 0.99 and CVs between 5.24% and 13.0% for all measurements. Inter-transverse process distances were reduced at L2/3 (p = 0.007), L3/4 (p = 0.006), and across the total lumbar distance (p = 0.02) following 15 and 30 min of loaded standing. Conclusion Ultrasonography is a reliable, low-cost method for quantifying changes in lumbar spine geometry during loaded standing. This technique may have value in occupational and clinical settings for assessing spinal compression in response to mechanical load.
Document Type: article in journal/newspaper
File Description: application/pdf
Language: unknown
Relation: https://research.usq.edu.au/download/ff9661b7a2c2f582b3a2899625c77b837ea4ad0dce8206202e6a3fe83eab4417/885510/JOR%20Spine%20-%202026%20-%20Walters%20-%20Reliability%20of%20Ultrasonography%20to%20Assess%20Spinal%20Compression%20During%20Heavy%20Load%20Carriage.pdf; https://doi.org/10.1002/jsp2.70137; Walters, Sherrilyn, Hoffman, Ben, Coltman, Celeste E., Walters, Lester, Iqbal, Muneeb and Mills, Dean E. 2026. "Reliability of Ultrasonography to Assess Spinal Compression During Heavy Load Carriage ." JOR Spine. 9 (1). https://doi.org/10.1002/jsp2.70137
DOI: 10.1002/jsp2.70137
Availability: https://research.usq.edu.au/item/102758/reliability-of-ultrasonography-to-assess-spinal-compression-during-heavy-load-carriage; https://doi.org/10.1002/jsp2.70137
Rights: CC BY 4.0
Accession Number: edsbas.F2F3C8B1
Database: BASE