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The use of normalized cross-correlation analysis for automatic tendon excursion measurement in dynamic ultrasound imaging

Pearson, S; Ritchings, RT; Mohamed, AS

Authors

RT Ritchings

AS Mohamed



Abstract

The work describes an automated method of tracking dynamic ultrasound images using a normalized cross-correlation algorithm, applied to the patellar and gastrocnemius tendon. Displacement was examined during active and passive tendon excursions using B-mode ultrasonography. In the passive test where two regions of interest (2-ROI) were tracked, the automated tracking algorithm showed insignificant deviations from relative zero displacement for the knee (0.01 ± 0.04 mm) and ankle (-0.02 ± 0.04 mm) (P > .05). Similarly, when tracking 1-ROI the passive tests showed no significant differences (P > .05) between automatic and manual methods, 7.50 ± 0.60 vs 7.66 ± 0.63 mm for the patellar and 11.28 ± 1.36 vs 11.17 ± 1.35 mm for the gastrocnemius tests. The active tests gave no significant differences (P > .05) between automatic and manual methods with differences of 0.29 ± 0.04 mm for the patellar and 0.26 ± 0.01 mm for the gastrocnemius. This study showed that automatic tracking of in vivo displacement of tendon during dynamic excursion under load is possible and valid when compared with the standardized method. This approach will save time during analysis and enable discrete areas of the tendon to be examined.

Citation

Pearson, S., Ritchings, R., & Mohamed, A. (2013). The use of normalized cross-correlation analysis for automatic tendon excursion measurement in dynamic ultrasound imaging. Journal of Applied Biomechanics, 29(2), 165-173

Journal Article Type Article
Publication Date Apr 1, 2013
Deposit Date Jul 3, 2015
Journal Journal of Applied Biomechanics
Print ISSN 1065-8483
Electronic ISSN 1543-2688
Publisher Human Kinetics
Peer Reviewed Peer Reviewed
Volume 29
Issue 2
Pages 165-173
Publisher URL http://journals.humankinetics.com/jab-back-issues/jab-volume-29-issue-2-april/the-use-of-normalized-cross-correlation-analysis-for-automatic-tendon-excursion-measurement-in-dynamic-ultrasound-imaging
Related Public URLs http://journals.humankinetics.com/JAB