Skeletal muscle attenuation determined by computed tomography is associated with skeletal muscle lipid content
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- 1 July 2000
- journal article
- research article
- Published by American Physiological Society in Journal of Applied Physiology
- Vol. 89 (1) , 104-110
- https://doi.org/10.1152/jappl.2000.89.1.104
Abstract
The purpose of this investigation was to validate that in vivo measurement of skeletal muscle attenuation (MA) with computed tomography (CT) is associated with muscle lipid content. Single-slice CT scans performed on phantoms of varying lipid concentrations revealed good concordance between attenuation and lipid concentration ( r2= 0.995); increasing the phantom's lipid concentration by 1 g/100 ml decreased its attenuation by ∼1 Hounsfield unit (HU). The test-retest coefficient of variation for two CT scans performed in six volunteers was 0.51% for the midthigh and 0.85% for the midcalf, indicating that the methodological variability is low. Lean subjects had significantly higher ( P < 0.01) MA values (49.2 ± 2.8 HU) than did obese nondiabetic (39.3 ± 7.5 HU) and obese Type 2 diabetic (33.9 ± 4.1 HU) subjects, whereas obese Type 2 diabetic subjects had lower MA values that were not different from obese nondiabetic subjects. There was also good concordance between MA in midthigh and midcalf ( r = 0.60, P < 0.01), psoas ( r = 0.65, P < 0.01), and erector spinae ( r = 0.77, P < 0.01) in subsets of volunteers. In 45 men and women who ranged from lean to obese (body mass index = 18.5 to 35.9 kg/m2), including 10 patients with Type 2 diabetes mellitus, reduced MA was associated with increased muscle fiber lipid content determined with histological oil red O staining ( P = −0.43, P < 0.01). In a subset of these volunteers ( n = 19), triglyceride content in percutaneous biopsy specimens from vastus lateralis was also associated with MA ( r = −0.58, P = 0.019). We conclude that the attenuation of skeletal muscle in vivo determined by CT is related to its lipid content and that this noninvasive method may provide additional information regarding the association between muscle composition and muscle function.Keywords
This publication has 29 references indexed in Scilit:
- Age-related changes in fat deposition in mid-thigh muscle in women: relationships with metabolic cardiovascular disease risk factorsInternational Journal of Obesity, 1999
- Intracellular and extracellular skeletal muscle triglyceride metabolism during alternating intensity exercise in humansThe Journal of Physiology, 1998
- Subcutaneous Abdominal Fat and Thigh Muscle Composition Predict Insulin Sensitivity Independently of Visceral FatDiabetes, 1997
- Skeletal Muscle Triglyceride Levels Are Inversely Related to Insulin ActionDiabetes, 1997
- Intramuscular triglyceride and muscle insulin sensitivity: Evidence for a relationship in nondiabetic subjectsMetabolism, 1996
- Muscle damage progression in Duchenne muscular dystrophy evaluated by a new quantitative computed tomography methodArchives of Physical Medicine and Rehabilitation, 1993
- Muscle composition in relation to age and sexClinical Science, 1991
- Fat infiltration, atrophy and hypertrophy of skeletal muscles demonstrated by X-ray computed tomography in neurological patientsActa Neurologica Scandinavica, 1988
- Size and composition of the calf and quadriceps muscles in Duchenne muscular dystrophyJournal of the Neurological Sciences, 1983
- Muscle triglycerides in diabetic subjectsDiabetologia, 1980