Literature DB >> 25295766

Validation of musculoskeletal ultrasound to assess and quantify muscle glycogen content. A novel approach.

John C Hill1, Iñigo San Millán.   

Abstract

UNLABELLED: Glycogen storage is essential for exercise performance. The ability to assess muscle glycogen levels should be an important advantage for performance. However, skeletal muscle glycogen assessment has only been available and validated through muscle biopsy. We have developed a new methodology using high-frequency ultrasound to assess skeletal muscle glycogen content in a rapid, portable, and noninvasive way using MuscleSound (MuscleSound, LCC, Denver, CO) technology.
PURPOSE: To validate the utilization of high-frequency musculoskeletal ultrasound for muscle glycogen assessment and correlate it with histochemical glycogen quantification through muscle biopsy.
METHODS: Twenty-two male competitive cyclists (categories: Pro, 1-4; average height, 183.7 ± 4.9 cm; average weight, 76.8 ± 7.8 kg) performed a steady-state test on a cyclergometer for 90 minutes at a moderate to high exercise intensity, eliciting a carbohydrate oxidation of 2-3 g·min⁻¹ and a blood lactate concentration of 2 to 3 mM. Pre- and post-exercise glycogen content from rectus femoris muscle was measured using histochemical analysis through muscle biopsy and through high-frequency ultrasound scans using MuscleSound technology.
RESULTS: Correlations between muscle biopsy glycogen histochemical quantification (mmol·kg⁻¹) and high-frequency ultrasound methodology through MuscleSound technology were r = 0.93 (P < 0.0001) pre-exercise and r = 0.94 (P < 0.0001) post-exercise. The correlation between muscle biopsy glycogen quantification and high-frequency ultrasound methodology for the change in glycogen from pre- and post-exercise was r = 0.81 (P < 0.0001).
CONCLUSION: These results demonstrate that skeletal muscle glycogen can be measured quickly and noninvasively through high-frequency ultrasound using MuscleSound technology.

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Year:  2014        PMID: 25295766     DOI: 10.3810/psm.2014.09.2075

Source DB:  PubMed          Journal:  Phys Sportsmed        ISSN: 0091-3847            Impact factor:   2.241


  22 in total

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Review 4.  Novel approaches to metabolic assessment and structured exercise to promote recovery in ICU survivors.

Authors:  Jeroen Molinger; Amy M Pastva; John Whittle; Paul E Wischmeyer
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Review 5.  The development of skeletal muscle hypertrophy through resistance training: the role of muscle damage and muscle protein synthesis.

Authors:  Felipe Damas; Cleiton A Libardi; Carlos Ugrinowitsch
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6.  Reliability and differences in quadriceps femoris muscle morphology using ultrasonography: The effects of body position and rest time.

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7.  Variation of skeletal muscle ultrasound imaging intensity in horses after treadmill exercise: a proof of concept for glycogen content estimation.

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8.  Ultrasonic assessment of exercise-induced change in skeletal muscle glycogen content.

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9.  Winning the war against ICU-acquired weakness: new innovations in nutrition and exercise physiology.

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Review 10.  Sports Ultrasound: Applications Beyond the Musculoskeletal System.

Authors:  Jonathan T Finnoff; Jeremiah Ray; Gianmichael Corrado; Deanna Kerkhof; John Hill
Journal:  Sports Health       Date:  2016-08-12       Impact factor: 3.843

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