4.5 Article

COPOLYMER-IN-OIL PHANTOM MATERIALS FOR ELASTOGRAPHY

期刊

ULTRASOUND IN MEDICINE AND BIOLOGY
卷 35, 期 7, 页码 1185-1197

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ELSEVIER SCIENCE INC
DOI: 10.1016/j.ultrasmedbio.2009.01.012

关键词

Elastography; Phantom; Ultrasound; Rheology

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Phantoms that mimic mechanical and acoustic properties of soft biological tissues are essential to elasticity imaging investigation and to elastography device characterization. Several materials including agar/gelatin, polyvinyl alcohol and polyacrylamide gels have been used successfully in the past to produce tissue phantoms, as reported in the literature. However, it is difficult to find a phantom material with a wide range of stiffness, good stability over time and high resistance to rupture. We aim at developing and testing a new copolymer-in-oil phantom material for elastography. The phantom is composed of a mixture of copolymer, mineral oil and additives for acoustic scattering. The mechanical properties of phantoms were evaluated with a mechanical test instrument and an ultrasound-based elastography technique. The acoustic properties were investigated using a through-transmission water-substituting method. We showed that copolymer-in-oil phantoms are stable over time. Their mechanical and acoustic properties mimic those of most soft tissues: the Young's modulus ranges from 2.2-150 kPa, the attenuation coefficient from 0.4-4.0 dB.cm(-1) and the ultrasound speed from 1420-1464 m/s. Their density is equal to 0.90 0.04 g/cm(3). The results suggest that copolymer-in-oil phantoms are attractive materials forelastography. (E-mail: jennifer.oudry@echosens.coni) (C) 2009 World Federation for Ultrasound in Medicine & Biology.

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