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January 1, 2013Journal of Obesity254 citationsOpen Access

Ultrasound as a Tool to Assess Body Fat

DWDale R. Wagner

Key Points

  • To review the technical principles, clinical utility, reliability, and validity of ultrasound for measuring subcutaneous and visceral adipose tissue.
  • Synthesized technical principles, measurement protocols, and diagnostic validity across nearly five decades of body composition ultrasound research.
  • Compared ultrasound performance, portability, and limitations against alternative body composition assessment techniques in clinical and regional settings.
  • Ultrasound provides reliable, reproducible, and accurate regional quantification of both subcutaneous and visceral adipose tissue layers.
  • The primary limitations identified include a lack of standardized measurement protocols and strong dependence on operator proficiency.
  • Emerging body composition-specific ultrasound devices and automated software algorithms help minimize operator error and standardize assessments.

Abstract

Ultrasound has been used effectively to assess body fat for nearly 5 decades, yet this method is not known as well as many other body composition techniques. The purpose of this review is to explain the technical principles of the ultrasound method, explain the procedures for taking a measurement and interpreting the results, evaluate the reliability and validity of this method for measuring subcutaneous and visceral adipose tissue, highlight the advantages and limitations of ultrasound relative to other body composition methods, consider its utility to clinical populations, and introduce new body composition-specific ultrasound technology. The focus of this review is adipose, although various tissue thicknesses (e.g., muscle and bone) can be measured with ultrasound. Being a portable imaging device that is capable of making fast regional estimates of body composition, ultrasound is an attractive assessment tool in instances when other methods are limited. Furthermore, much of the research suggests that it is reliable, reproducible, and accurate. The biggest limitations appear to be a lack of standardization for the measurement technique and results that are highly dependent on operator proficiency. New ultrasound devices and accompanying software designed specifically for the purpose of body composition assessment might help to minimize these limitations.

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Cite This Study

Dale R. Wagner (2013) studied this question.

synapsesocial.com/papers/69ffcc75d1d8b50f8e9a11dbhttps://doi.org/10.1155/2013/280713
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