Reliability of biceps femoris and semitendinosus muscle architecture measurements obtained with ultrasonography

Introduction Currently, little attention is given to the muscle architecture reliability studies of the hamstring using a robust statistical. Our purpose was to determine the reliability of ultrasound measurements of muscle thickness, fascicle length and pennation angle of the biceps femoris and semitendinosus muscles, including heteroskedasticity and internal consistency analyses. Methods Two images of biceps femoris and semitendinosus at 50% of the thigh length were acquired from 21 volunteers, in two visits. The parameters were measured three times in each image, and for each muscle. The reliability was analyzed by the intraclass correlation coefficient (ICC) and Cronbach’s alpha (αCronbach). The relative standard error of the measurements (%SEM) were calculated and Bland-Altman plots were generated. Results All parameters presented excellent ICC for the three repeated measurements (ICC from 0.93 ‒ 0.99) and moderate to excellent reliability intraday (ICC from 0.70 ‒ 0.95) for both muscles. The present study indicates that ultrasound is a reliable tool to estimate the biceps femoris fascicle length (ICC = 0.97, αCronbach = 0.98, %SEM = 7.86) and semitendinosus (ICC = 0.90, αCronbach = 0.95, %SEM = 7.55), as well as the biceps femoris muscle thickness (ICC = 0.89, αCronbach = 0.94, %SEM = 10.23) and semitendinosus muscle thickness (ICC = 0.87, αCronbach = 0.93, %SEM = 1.35). At last, biceps femoris pennation angle (ICC = 0.93, αCronbach = 0.96 and %SEM = 4.36) and semitendinosus (ICC = 0.96, αCronbach = 0.98 and %SEM = 4.25) also had good repeatability. Conclusion Ultrasonography show good repeatability in estimating of muscle architecture parameters.

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Main Authors: Oliveira,Viviane Bastos de, Carneiro,Simone Peres, Oliveira,Liliam Fernandes de
Format: Digital revista
Language:English
Published: Sociedade Brasileira de Engenharia Biomédica 2016
Online Access:http://old.scielo.br/scielo.php?script=sci_arttext&pid=S2446-47402016000400365
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spelling oai:scielo:S2446-474020160004003652017-02-10Reliability of biceps femoris and semitendinosus muscle architecture measurements obtained with ultrasonographyOliveira,Viviane Bastos deCarneiro,Simone PeresOliveira,Liliam Fernandes de Reliability Hamstring Ultrasound Muscle architecture Introduction Currently, little attention is given to the muscle architecture reliability studies of the hamstring using a robust statistical. Our purpose was to determine the reliability of ultrasound measurements of muscle thickness, fascicle length and pennation angle of the biceps femoris and semitendinosus muscles, including heteroskedasticity and internal consistency analyses. Methods Two images of biceps femoris and semitendinosus at 50% of the thigh length were acquired from 21 volunteers, in two visits. The parameters were measured three times in each image, and for each muscle. The reliability was analyzed by the intraclass correlation coefficient (ICC) and Cronbach’s alpha (αCronbach). The relative standard error of the measurements (%SEM) were calculated and Bland-Altman plots were generated. Results All parameters presented excellent ICC for the three repeated measurements (ICC from 0.93 ‒ 0.99) and moderate to excellent reliability intraday (ICC from 0.70 ‒ 0.95) for both muscles. The present study indicates that ultrasound is a reliable tool to estimate the biceps femoris fascicle length (ICC = 0.97, αCronbach = 0.98, %SEM = 7.86) and semitendinosus (ICC = 0.90, αCronbach = 0.95, %SEM = 7.55), as well as the biceps femoris muscle thickness (ICC = 0.89, αCronbach = 0.94, %SEM = 10.23) and semitendinosus muscle thickness (ICC = 0.87, αCronbach = 0.93, %SEM = 1.35). At last, biceps femoris pennation angle (ICC = 0.93, αCronbach = 0.96 and %SEM = 4.36) and semitendinosus (ICC = 0.96, αCronbach = 0.98 and %SEM = 4.25) also had good repeatability. Conclusion Ultrasonography show good repeatability in estimating of muscle architecture parameters.info:eu-repo/semantics/openAccessSociedade Brasileira de Engenharia BiomédicaResearch on Biomedical Engineering v.32 n.4 20162016-12-01info:eu-repo/semantics/articletext/htmlhttp://old.scielo.br/scielo.php?script=sci_arttext&pid=S2446-47402016000400365en10.1590/2446-4740.04115
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country Brasil
countrycode BR
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region America del Sur
libraryname SciELO
language English
format Digital
author Oliveira,Viviane Bastos de
Carneiro,Simone Peres
Oliveira,Liliam Fernandes de
spellingShingle Oliveira,Viviane Bastos de
Carneiro,Simone Peres
Oliveira,Liliam Fernandes de
Reliability of biceps femoris and semitendinosus muscle architecture measurements obtained with ultrasonography
author_facet Oliveira,Viviane Bastos de
Carneiro,Simone Peres
Oliveira,Liliam Fernandes de
author_sort Oliveira,Viviane Bastos de
title Reliability of biceps femoris and semitendinosus muscle architecture measurements obtained with ultrasonography
title_short Reliability of biceps femoris and semitendinosus muscle architecture measurements obtained with ultrasonography
title_full Reliability of biceps femoris and semitendinosus muscle architecture measurements obtained with ultrasonography
title_fullStr Reliability of biceps femoris and semitendinosus muscle architecture measurements obtained with ultrasonography
title_full_unstemmed Reliability of biceps femoris and semitendinosus muscle architecture measurements obtained with ultrasonography
title_sort reliability of biceps femoris and semitendinosus muscle architecture measurements obtained with ultrasonography
description Introduction Currently, little attention is given to the muscle architecture reliability studies of the hamstring using a robust statistical. Our purpose was to determine the reliability of ultrasound measurements of muscle thickness, fascicle length and pennation angle of the biceps femoris and semitendinosus muscles, including heteroskedasticity and internal consistency analyses. Methods Two images of biceps femoris and semitendinosus at 50% of the thigh length were acquired from 21 volunteers, in two visits. The parameters were measured three times in each image, and for each muscle. The reliability was analyzed by the intraclass correlation coefficient (ICC) and Cronbach’s alpha (αCronbach). The relative standard error of the measurements (%SEM) were calculated and Bland-Altman plots were generated. Results All parameters presented excellent ICC for the three repeated measurements (ICC from 0.93 ‒ 0.99) and moderate to excellent reliability intraday (ICC from 0.70 ‒ 0.95) for both muscles. The present study indicates that ultrasound is a reliable tool to estimate the biceps femoris fascicle length (ICC = 0.97, αCronbach = 0.98, %SEM = 7.86) and semitendinosus (ICC = 0.90, αCronbach = 0.95, %SEM = 7.55), as well as the biceps femoris muscle thickness (ICC = 0.89, αCronbach = 0.94, %SEM = 10.23) and semitendinosus muscle thickness (ICC = 0.87, αCronbach = 0.93, %SEM = 1.35). At last, biceps femoris pennation angle (ICC = 0.93, αCronbach = 0.96 and %SEM = 4.36) and semitendinosus (ICC = 0.96, αCronbach = 0.98 and %SEM = 4.25) also had good repeatability. Conclusion Ultrasonography show good repeatability in estimating of muscle architecture parameters.
publisher Sociedade Brasileira de Engenharia Biomédica
publishDate 2016
url http://old.scielo.br/scielo.php?script=sci_arttext&pid=S2446-47402016000400365
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