Assessing skeletal muscle radiodensity by computed tomography: An integrative review of the applied methodologies
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Clin Physiol Funct Imaging
Abstract
Low-radiodensity skeletal muscle has been related to the degree of muscle fat infil tration and seems to be associated with worse outcomes. The aim of this study was
to summarize the methodologies used to appraise skeletal muscle radiodensity by
computed tomography, to describe the terms used in the literature to define mus cle radiodensity and to give recommendations for its measurement standardization.
An integrative bibliographic review in four databases included studies published until
August 2019 in Portuguese, English or Spanish and performed in humans, adults and/
or the elderly, of both sex, which investigated skeletal muscle radiodensity through
computed tomography (CT) of the region between the third and fifth lumbar vertebrae
and evaluated at least two muscular groups. One hundred and seventeen studies were
selected. We observed a trend towards selecting all abdominal region muscle. A sig nificant methodological variation in terms of contrast use, selection of skeletal muscle
areas, radiodensity ranges delimitation and their cut-off points, as well as the terminol ogies used, was also found. The methodological differences detected are probably due
to the lack of more precise information about the correlation between skeletal muscle
radiodensity by CT and its molecular composition, among others. Therefore, until the
gaps are addressed in future studies, authors should avoid arbitrary approaches when
reporting skeletal muscle radiodensity, especially when it comes to prognosis infer ence. Studies using both CT and direct methods of muscle composition evaluation are
encouraged, to enable the definition and validation of the best approach to classify
fat-infiltrated muscle tissue, which will favour the nomenclature uniformization.
Description
p. 207–223.: tab. p&b.
Citation
CHAVES, Gabriela Villaça; POLTRONIERI, Taiara Scopel; PAULA, Nathália Silva de. Assessing skeletal muscle radiodensity by computed tomography: An integrative review of the applied methodologies. Clin Physiol Funct Imaging, v. 40, p. 207–223, 2020.