Literature DB >> 16284595

The use of magnetic resonance imaging to evaluate lumbar muscle activity during trunk extension exercise at varying intensities.

John M Mayer1, James E Graves, Brian C Clark, Mar Formikell, Lori L Ploutz-Snyder.   

Abstract

STUDY
DESIGN: Descriptive, repeated measures analysis of exercise-induced changes in lumbar muscle transverse relaxation time (T2).
OBJECTIVES: To use muscle functional magnetic resonance imaging (MRI) to characterize the activity levels and recruitment patterns of the lumbar extensor muscles during trunk extension exercise over 3 intensities. SUMMARY OF BACKGROUND DATA: Contrast shifts in T2 are indicative of skeletal muscle activity during resistance exercise and are used to characterize the function of a variety of muscles. The use of muscle functional MRI for the lumbar muscles has been limited.
METHODS: In 11 healthy participants, T2 was calculated for the lumbar quadratus lumborum, iliocostalis lumborum, longissimus thoracis, and multifidus at rest and following dynamic trunk extension exercise at 3 exercise intensities (40%, 50%, and 70% peak intensity).
RESULTS: The multifidus displayed the largest T2 increase at each of the 3 exercise intensities, followed by the erector spinae and, finally, the quadratus lumborum. At the lowest intensity, the medial erector spinae (longissimus thoracis) displayed a higher T2 increase than the lateral group (iliocostalis lumborum), while at the higher intensities, this pattern was reversed. In general, the T2 increase was higher during exercise at 50% and 70% intensities than at 40%, while there was no difference in T2 increase between 50% and 70%.
CONCLUSIONS: Muscle functional MRI can be used to characterize lumbar muscle function during trunk extension exercise. The levels and recruitment patterns of the lumbar extensors, as measured by muscle T2 shifts, vary with exercise intensity. Future research is needed to assess the mechanism of the nonlinear relationship between T2 shifts and exercise intensity, and to clarify the effects of fatigue and the order of exercise presentation on the T2 response of the lumbar extensors.

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Year:  2005        PMID: 16284595     DOI: 10.1097/01.brs.0000186321.24370.4b

Source DB:  PubMed          Journal:  Spine (Phila Pa 1976)        ISSN: 0362-2436            Impact factor:   3.468


  10 in total

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2.  Differentiation between deep and superficial fibers of the lumbar multifidus by magnetic resonance imaging.

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3.  Assessment of lumbar paraspinal muscle activation using fMRI BOLD imaging and T2 mapping.

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4.  Posterior muscle chain activity during various extension exercises: an observational study.

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Authors:  Yong Gon Seo; Won Hah Park; Chong Suh Lee; Kyung Chung Kang
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6.  Towards a Simplified Estimation of Muscle Activation Pattern from MRI and EMG Using Electrical Network and Graph Theory.

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7.  Muscular blood oxygen level-dependent MRI is beneficial to evaluate effectiveness of an exercise prescription.

Authors:  Yilong Huang; Jialu Wei; Dan Han; Yuanming Jiang; Jia Zhang; Zhenguang Zhang; Bo He
Journal:  Ann Transl Med       Date:  2021-03

8.  Muscle functional magnetic resonance imaging and acute low back pain: a pilot study to characterize lumbar muscle activity asymmetries and examine the effects of osteopathic manipulative treatment.

Authors:  Brian C Clark; Stevan Walkowski; Robert R Conatser; David C Eland; John N Howell
Journal:  Osteopath Med Prim Care       Date:  2009-08-27

9.  Post-traumatic upper cervical subluxation visualized by MRI: a case report.

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Journal:  Chiropr Osteopat       Date:  2007-12-19

10.  Electromyographic Analysis of the Lumbar Extensor Muscles during Dynamic Exercise on a Home Exercise Device.

Authors:  John M Mayer; Brian E Udermann; Joe L Verna
Journal:  J Funct Morphol Kinesiol       Date:  2022-03-01
  10 in total

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