Abstract
Ultrasound elastography enables
in vivo
measurement of the mechanical properties of living soft tissues in a non-destructive and non-invasive manner and has attracted considerable interest for clinical use in recent years. Continuum mechanics plays an essential role in understanding and improving ultrasound-based elastography methods and is the main focus of this review. In particular, the mechanics theories involved in both static and dynamic elastography methods are surveyed. They may help understand the challenges in and opportunities for the practical applications of various ultrasound elastography methods to characterize the linear elastic, viscoelastic, anisotropic elastic and hyperelastic properties of both bulk and thin-walled soft materials, especially the
in vivo
characterization of biological soft tissues.
Funder
National Natural Science Foundation of China
Subject
General Physics and Astronomy,General Engineering,General Mathematics
Cited by
80 articles.
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