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A functional MRI Exploration of Hamstring Activation During the Supine Bridge Exercise.
Int J Sports Med. 2018 02; 39(2):104-109.IJ

Abstract

The single leg supine bridge (SLB) is a commonly employed strengthening exercise and is used as a clinical test for hamstring function in sports, however, little is known about the patterns of muscle activation in this task. To explore these activation patterns, nine healthy, recreationally active males underwent functional magnetic resonance imaging (fMRI) of their thighs at rest and immediately after 5 sets of 10 repetitions of the SLB exercise. Exercise-induced increases in the transverse (T2) relaxation time of the biceps femoris long and short heads, semitendinosus and semimembranosus, were determined via signal intensity changes in pre- and post-exercise images and used as an index of muscle activation. The Bonferroni adjusted alpha was set at p<0.008. The semitendinosus exhibited a greater T2 increase than the biceps femoris short head (p<0.001, d=2.0) and semimembranosus (p=0.001, d=1.2), but not biceps femoris long head (p=0.029, d=0.9). Furthermore, the percentage change in T2 for biceps femoris long head was greater than its short head (p=0.003, d=1.4). During the SLB exercise, the semitendinosus is most selectively targeted and the biceps femoris long head is preferentially activated over its short head. These findings may have implications for the use of the SLB in hamstring injury prevention and rehabilitation programs.

Authors+Show Affiliations

Department of Rehabilitation, Nutrition and Sport, La Trobe University College of Science Health and Engineering, Nutrition and Sport, Bundoora, Australia.School of Sport and Professional Practice, University of South Wales, Wales, United Kingdom, School of Health, Faculty of Life Sciences and Education, Cardiff, United Kingdom of Great Britain and Northern Ireland.Department of Rehabilitation, Nutrition and Sport, La Trobe University College of Science Health and Engineering, Nutrition and Sport, Bundoora, Australia.School of Exercise and Nutrition Sciences, Queensland University of Technology, Brisbane, Australia.

Pub Type(s)

Journal Article

Language

eng

PubMed ID

29161747

Citation

Bourne, Matthew, et al. "A Functional MRI Exploration of Hamstring Activation During the Supine Bridge Exercise." International Journal of Sports Medicine, vol. 39, no. 2, 2018, pp. 104-109.
Bourne M, Williams M, Pizzari T, et al. A functional MRI Exploration of Hamstring Activation During the Supine Bridge Exercise. Int J Sports Med. 2018;39(2):104-109.
Bourne, M., Williams, M., Pizzari, T., & Shield, A. (2018). A functional MRI Exploration of Hamstring Activation During the Supine Bridge Exercise. International Journal of Sports Medicine, 39(2), 104-109. https://doi.org/10.1055/s-0043-121150
Bourne M, et al. A Functional MRI Exploration of Hamstring Activation During the Supine Bridge Exercise. Int J Sports Med. 2018;39(2):104-109. PubMed PMID: 29161747.
* Article titles in AMA citation format should be in sentence-case
TY - JOUR T1 - A functional MRI Exploration of Hamstring Activation During the Supine Bridge Exercise. AU - Bourne,Matthew, AU - Williams,Morgan, AU - Pizzari,Tania, AU - Shield,Anthony, Y1 - 2017/11/21/ PY - 2017/11/22/pubmed PY - 2018/5/1/medline PY - 2017/11/22/entrez SP - 104 EP - 109 JF - International journal of sports medicine JO - Int J Sports Med VL - 39 IS - 2 N2 - The single leg supine bridge (SLB) is a commonly employed strengthening exercise and is used as a clinical test for hamstring function in sports, however, little is known about the patterns of muscle activation in this task. To explore these activation patterns, nine healthy, recreationally active males underwent functional magnetic resonance imaging (fMRI) of their thighs at rest and immediately after 5 sets of 10 repetitions of the SLB exercise. Exercise-induced increases in the transverse (T2) relaxation time of the biceps femoris long and short heads, semitendinosus and semimembranosus, were determined via signal intensity changes in pre- and post-exercise images and used as an index of muscle activation. The Bonferroni adjusted alpha was set at p<0.008. The semitendinosus exhibited a greater T2 increase than the biceps femoris short head (p<0.001, d=2.0) and semimembranosus (p=0.001, d=1.2), but not biceps femoris long head (p=0.029, d=0.9). Furthermore, the percentage change in T2 for biceps femoris long head was greater than its short head (p=0.003, d=1.4). During the SLB exercise, the semitendinosus is most selectively targeted and the biceps femoris long head is preferentially activated over its short head. These findings may have implications for the use of the SLB in hamstring injury prevention and rehabilitation programs. SN - 1439-3964 UR - https://www.unboundmedicine.com/medline/citation/29161747/A_functional_MRI_Exploration_of_Hamstring_Activation_During_the_Supine_Bridge_Exercise_ DB - PRIME DP - Unbound Medicine ER -