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Knee flexor muscles angle-dependent co-activation level during maximal isometric contraction by knee extensors

نویسنده:
Nosratollah Hedayatpour
,
مهرداد فتحی
,
Mehrdad Fathei
سال
: 2014
چکیده: Background:The aim of this study was to investigate Co-activation of knee flexor muscle during maximal voluntary contraction of the quadriceps muscles at different knee angles.

Method and Material: Bipolar surface electromyographic (EMG) signals were simultaneously recorded from knee extensor muscles (vastus medialis, rectus femoris and vastus lateralis) and knee flexor muscles (the medial and lateral heads of the gastrocnemius and the medial and lateral heads of the hamstring) of the right leg during maximal knee extension performed at 90°, 140° and 165° (180° being full extension).

Result: The result showed that maximal knee extension force at 90° angle was significantly greater than 140° and at 140° was larger than 165° angle (P< 0.0001). Similarly, EMG amplitudes of the knee extensors at 90° angle was significantly larger than 140° and, at 140° was greater than 165° angle during maximal knee extension contraction (P< 0.05). Conversely, muscle activation for knee flexor muscles were significantly larger at 140° and 165° of knee extension angles in comparison with 90° angle during maximal knee extension contraction (P< 0.05).

Conclusion: A greater muscle activation of the knee flexor muscles at 140° and 165° of knee angles produces a high force that acts in opposition to the quadriceps and may partly explain that why knee extension force at the mentioned knee angles are less than 90° of knee angle.
یو آر آی: http://libsearch.um.ac.ir:80/fum/handle/fum/3356271
کلیدواژه(گان): Knee flexor muscles angle,Maximal isometric contraction,Knee extensors

کالکشن :
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    Knee flexor muscles angle-dependent co-activation level during maximal isometric contraction by knee extensors

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contributor authorNosratollah Hedayatpouren
contributor authorمهرداد فتحیen
contributor authorMehrdad Fatheifa
date accessioned2020-06-06T13:28:23Z
date available2020-06-06T13:28:23Z
date issued2014
identifier urihttp://libsearch.um.ac.ir:80/fum/handle/fum/3356271?locale-attribute=fa
description abstractBackground:The aim of this study was to investigate Co-activation of knee flexor muscle during maximal voluntary contraction of the quadriceps muscles at different knee angles.

Method and Material: Bipolar surface electromyographic (EMG) signals were simultaneously recorded from knee extensor muscles (vastus medialis, rectus femoris and vastus lateralis) and knee flexor muscles (the medial and lateral heads of the gastrocnemius and the medial and lateral heads of the hamstring) of the right leg during maximal knee extension performed at 90°, 140° and 165° (180° being full extension).

Result: The result showed that maximal knee extension force at 90° angle was significantly greater than 140° and at 140° was larger than 165° angle (P< 0.0001). Similarly, EMG amplitudes of the knee extensors at 90° angle was significantly larger than 140° and, at 140° was greater than 165° angle during maximal knee extension contraction (P< 0.05). Conversely, muscle activation for knee flexor muscles were significantly larger at 140° and 165° of knee extension angles in comparison with 90° angle during maximal knee extension contraction (P< 0.05).

Conclusion: A greater muscle activation of the knee flexor muscles at 140° and 165° of knee angles produces a high force that acts in opposition to the quadriceps and may partly explain that why knee extension force at the mentioned knee angles are less than 90° of knee angle.
en
languageEnglish
titleKnee flexor muscles angle-dependent co-activation level during maximal isometric contraction by knee extensorsen
typeJournal Paper
contenttypeExternal Fulltext
subject keywordsKnee flexor muscles angleen
subject keywordsMaximal isometric contractionen
subject keywordsKnee extensors

en
journal titleInternational Journal of Sport Studiesfa
pages744-750
journal volume4
journal issue7
identifier linkhttps://profdoc.um.ac.ir/paper-abstract-1054994.html
identifier articleid1054994
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