Dynamic ultrasound imaging—A multivariate approach for the analysis and comparison of time-dependent musculoskeletal movements

<p>Abstract</p> <p>Background</p> <p>Muscle functions are generally assumed to affect a wide variety of conditions and activities, including pain, ischemic and neurological disorders, exercise and injury. It is therefore very desirable to obtain more information on musc...

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Main Authors: Löfstedt Tommy, Ahnlund Olof, Peolsson Michael, Trygg Johan
Format: Article
Language:English
Published: BMC 2012-09-01
Series:BMC Medical Imaging
Subjects:
Online Access:http://www.biomedcentral.com/1471-2342/12/29
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spelling doaj-62f5f5723b2c4868973d70bb64fd77712020-11-25T01:54:32ZengBMCBMC Medical Imaging1471-23422012-09-011212910.1186/1471-2342-12-29Dynamic ultrasound imaging—A multivariate approach for the analysis and comparison of time-dependent musculoskeletal movementsLöfstedt TommyAhnlund OlofPeolsson MichaelTrygg Johan<p>Abstract</p> <p>Background</p> <p>Muscle functions are generally assumed to affect a wide variety of conditions and activities, including pain, ischemic and neurological disorders, exercise and injury. It is therefore very desirable to obtain more information on musculoskeletal contributions to and activity during clinical processes such as the treatment of muscle injuries, post-surgery evaluations, and the monitoring of progressive degeneration in neuromuscular disorders.</p> <p>The spatial image resolution achievable with ultrasound systems has improved tremendously in the last few years and it is nowadays possible to study skeletal muscles in real-time during activity. However, ultrasound imaging has an inherent problem that makes it difficult to compare different measurement series or image sequences from two or more subjects. Due to physiological differences between different subjects, the ultrasound sequences will be visually different – partly because of variation in probe placement and partly because of the difficulty of perfectly reproducing any given movement.</p> <p>Methods</p> <p>Ultrasound images of the biceps and calf of a single subject were transformed to achieve congruence and then efficiently compressed and stacked to facilitate analysis using a multivariate method known as O2PLS. O2PLS identifies related and unrelated variation in and between two sets of data such that different phases of the studied movements can be analysed. The methodology was used to study the dynamics of the Achilles tendon and the calf and also the Biceps brachii and upper arm. The movements of these parts of the body are both of interest in clinical orthopaedic research.</p> <p>Results</p> <p>This study extends the novel method of multivariate analysis of congruent images (MACI) to facilitate comparisons between two series of ultrasound images. This increases its potential range of medical applications and its utility for detecting, visualising and quantifying the dynamics and functions of skeletal muscle.</p> <p>Conclusions</p> <p>The most important results of this study are that MACI with O2PLS is able to consistently extract meaningful variability from pairs of ultrasound sequences. The MACI method with O2PLS is a powerful tool with great potential for visualising and comparing dynamics between movements. It has many potential clinical applications in the study of muscle injuries, post-surgery evaluations and evaluations of rehabilitation, and the assessment of athletic training interventions.</p> http://www.biomedcentral.com/1471-2342/12/29UltrasoundMedical imagingWavelet transformMusculoskeletal movementsMultivariate data analysisO2PLSSpeckle tracking
collection DOAJ
language English
format Article
sources DOAJ
author Löfstedt Tommy
Ahnlund Olof
Peolsson Michael
Trygg Johan
spellingShingle Löfstedt Tommy
Ahnlund Olof
Peolsson Michael
Trygg Johan
Dynamic ultrasound imaging—A multivariate approach for the analysis and comparison of time-dependent musculoskeletal movements
BMC Medical Imaging
Ultrasound
Medical imaging
Wavelet transform
Musculoskeletal movements
Multivariate data analysis
O2PLS
Speckle tracking
author_facet Löfstedt Tommy
Ahnlund Olof
Peolsson Michael
Trygg Johan
author_sort Löfstedt Tommy
title Dynamic ultrasound imaging—A multivariate approach for the analysis and comparison of time-dependent musculoskeletal movements
title_short Dynamic ultrasound imaging—A multivariate approach for the analysis and comparison of time-dependent musculoskeletal movements
title_full Dynamic ultrasound imaging—A multivariate approach for the analysis and comparison of time-dependent musculoskeletal movements
title_fullStr Dynamic ultrasound imaging—A multivariate approach for the analysis and comparison of time-dependent musculoskeletal movements
title_full_unstemmed Dynamic ultrasound imaging—A multivariate approach for the analysis and comparison of time-dependent musculoskeletal movements
title_sort dynamic ultrasound imaging—a multivariate approach for the analysis and comparison of time-dependent musculoskeletal movements
publisher BMC
series BMC Medical Imaging
issn 1471-2342
publishDate 2012-09-01
description <p>Abstract</p> <p>Background</p> <p>Muscle functions are generally assumed to affect a wide variety of conditions and activities, including pain, ischemic and neurological disorders, exercise and injury. It is therefore very desirable to obtain more information on musculoskeletal contributions to and activity during clinical processes such as the treatment of muscle injuries, post-surgery evaluations, and the monitoring of progressive degeneration in neuromuscular disorders.</p> <p>The spatial image resolution achievable with ultrasound systems has improved tremendously in the last few years and it is nowadays possible to study skeletal muscles in real-time during activity. However, ultrasound imaging has an inherent problem that makes it difficult to compare different measurement series or image sequences from two or more subjects. Due to physiological differences between different subjects, the ultrasound sequences will be visually different – partly because of variation in probe placement and partly because of the difficulty of perfectly reproducing any given movement.</p> <p>Methods</p> <p>Ultrasound images of the biceps and calf of a single subject were transformed to achieve congruence and then efficiently compressed and stacked to facilitate analysis using a multivariate method known as O2PLS. O2PLS identifies related and unrelated variation in and between two sets of data such that different phases of the studied movements can be analysed. The methodology was used to study the dynamics of the Achilles tendon and the calf and also the Biceps brachii and upper arm. The movements of these parts of the body are both of interest in clinical orthopaedic research.</p> <p>Results</p> <p>This study extends the novel method of multivariate analysis of congruent images (MACI) to facilitate comparisons between two series of ultrasound images. This increases its potential range of medical applications and its utility for detecting, visualising and quantifying the dynamics and functions of skeletal muscle.</p> <p>Conclusions</p> <p>The most important results of this study are that MACI with O2PLS is able to consistently extract meaningful variability from pairs of ultrasound sequences. The MACI method with O2PLS is a powerful tool with great potential for visualising and comparing dynamics between movements. It has many potential clinical applications in the study of muscle injuries, post-surgery evaluations and evaluations of rehabilitation, and the assessment of athletic training interventions.</p>
topic Ultrasound
Medical imaging
Wavelet transform
Musculoskeletal movements
Multivariate data analysis
O2PLS
Speckle tracking
url http://www.biomedcentral.com/1471-2342/12/29
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