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Ultrasonics - Physics and applications (Hardcover): Mami Matsukawa, Pak-Kon Choi, Kentaro Nakamura, Hirotsugu Ogi, Hideyuki... Ultrasonics - Physics and applications (Hardcover)
Mami Matsukawa, Pak-Kon Choi, Kentaro Nakamura, Hirotsugu Ogi, Hideyuki Hasegawa
R3,624 Discovery Miles 36 240 Ships in 9 - 15 working days
Ultrafast Ultrasound Imaging (Paperback): Hideyuki Hasegawa, Chris L de Korte Ultrafast Ultrasound Imaging (Paperback)
Hideyuki Hasegawa, Chris L de Korte
R1,392 R1,149 Discovery Miles 11 490 Save R243 (17%) Ships in 10 - 15 working days
Ultrasonic Methods for Measurement of Small Motion and Deformation of Biological Tissues for Assessment of Viscoelasticity... Ultrasonic Methods for Measurement of Small Motion and Deformation of Biological Tissues for Assessment of Viscoelasticity (Hardcover)
Hideyuki Hasegawa, Hiroshi Kanai
R2,174 R1,640 Discovery Miles 16 400 Save R534 (25%) Ships in 10 - 15 working days

In this monograph, an accurate ultrasonic method for measurement of small motion and deformation of biological tissue is described. In the displacement estimation based on the phase change of echoes, the displacement estimates are biased when the center frequency of the RF echo changes. Such an apparent change in the center frequency could be caused by the interference of echoes from scatterers. To reduce the influence of the center frequency variation on the estimation of motion and deformation, an error correcting function, which does not require the assumption that the center frequency distributions in 2 different frames are the same, was introduced. As a result, the proposed method provides better strain estimates in comparison with conventional phase-sensitive correlation methods. This monograph also shows examples of applications of this method to measurement of small motion and deformation of biological tissues. This method can be applied to measurement of elasticity of dynamic tissues, such as the artery. Also, elastic properties of static tissues can be also measured by combining with actuation using the acoustic radiation force.

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