By Iwaki Akiyama

ISBN-10: 1402088221

ISBN-13: 9781402088223

ISBN-10: 140208823X

ISBN-13: 9781402088230

The 29th foreign Symposium on Acoustical Imaging was once held in Shonan Village, Kanagawa, Japan, April 15-18, 2007. This interdisciplinary Symposium has been occurring each years considering the fact that 1968 and varieties a distinct discussion board for complicated examine, overlaying new applied sciences, advancements, equipment and theories in all parts of acoustics. through the years the volumes within the Acoustical Imaging sequence have built and turn into recognized and preferred reference works.

Offering either a wide viewpoint at the state of the art within the box in addition to an in-depth examine its innovative study, this quantity 29 within the sequence comprises back a very good number of seventy papers awarded in 9 significant different types: (1) pressure Imaging, (2) organic and clinical purposes, (3) Acoustic Microscopy, (4) Non-Destructive overview and commercial purposes, (5) parts and structures, (6) Geophysics and Underwater Imaging, (7) Physics and arithmetic, (8) clinical snapshot research, (9) FDTD strategy and different Numerical Simulations.

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7. Y. C. Fung: Biomechanics: Mechanical Properties of Living Tissues, 2nd ed. Springer-Verlag, New York (1993). 8. N. Nitta, T. Shiina and E. Ueno: Proc. of 2003 IEEE International Ultrasonics Symposium (2003) 1606. STRAIN IMAGING FOR ARTERIAL WALL WITH TRANSLATIONAL MOTION COMPENSATION AND CENTER FREQUENCY ESTIMATION H. Hasegawa, H. Kanai Graduate School of Engineering, Tohoku University, Sendai 980-8579, Japan Abstract: Atherosclerotic change of the arterial wall leads to a significant change in its elasticity.

E. Lindop, G. M. Treece, A. H. Gee, and R. W. Prager. CUED/F-INFENG/TR 566 (2006). T. Varghese and J. Ophir. Ultrason. Med. , 23 (1997) 1343. F. Kallel, T. Vargese, J. Ophir, and M. Bilgen. Ultrason. Med. , 23 (1997) 1357. J. E. Lindop, G. M. Treece, A. H. Gee, and R. W. Prager. CUED/F-INFENG/TR 555 (2006). J. E. Lindop, G. M. Treece, A. H. Gee, and R. W. Prager. CUED/F-INFENG/TR 550 (2006). S. K. Alam, J. Ophir, and E. E. Konofagou. IEEE T. UFFC, 45 (1998) 461. A NEW NON-INVASIVE ULTRASONIC METHOD FOR MEASUREMENTS OF LONGITUDINAL LENGTH ALTERATION OF THE ARTERIAL WALL – FIRST IN VIVO TRIAL M.

4. H. Kanai, M. Sato, N. Chubachi, and Y. Koiwa, Transcutaneous measurement and spectrum analysis of heart wall vibrations, IEEE Trans. Ultrason. Ferroelect. Freq. Contr. 43, 791–810 (1996). S. I. Rabben, S. Bjærum, V. Sørhus, and H. Torp, Ultrasound-based vessel wall tracking: an auto-correlation technique with RF center frequency estimation, Ultrasound Med. Biol. 28, 507–517 (2002). H. Hasegawa and H. Kanai, Improving accuracy in estimation of artery-wall displacement by referring to center frequency of RF echo, IEEE Trans.

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Acoustical Imaging: Volume 29 by Iwaki Akiyama

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