By J.F. Greenleaf, X. Zhang, C. Pislaru (auth.), Iwaki Akiyama (eds.)
The 29th overseas Symposium on Acoustical Imaging used to be held in Shonan Village, Kanagawa, Japan, April 15-18, 2007.
This interdisciplinary Symposium has been happening each years considering that 1968 and types a distinct discussion board for complex learn, masking new applied sciences, advancements, equipment and theories in all components of acoustics. throughout the years the volumes within the Acoustical Imaging sequence have built and develop into recognized and liked reference works.
Offering either a extensive viewpoint at the cutting-edge within the box in addition to an in-depth examine its innovative study, this quantity 29 within the sequence includes back a good choice of seventy papers offered in 9 significant categories:
Biological and clinical Applications
Non-Destructive assessment and business Applications
Components and Systems
Geophysics and Underwater Imaging
Physics and Mathematics
Medical photo Analysis
FDTD process and different Numerical Simulations
Researchers, business scientists, clinicians, graduate scholars drawn to utilizing acoustics for all elements of imaging.
Read or Download Acoustical Imaging PDF
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Extra info for Acoustical Imaging
Reliability and ease-of-use have become important considerations. These depend on the selection of appropriate imaging parameters. Here we undertake two tasks: (1) the tradeoff between resolution and estimation precision is examined closely, establishing quantitative models for the impacts of imaging parameters and data properties; and (2) these models are applied in a system for automatically selecting parameters responsive to data quality and required estimation precision. This yields more meaningful images when scan conditions vary.
N. , McGraw Hill, New York (1970). NEAR-REAL-TIME 3D ULTRASONIC STRAIN IMAGING G. Treece, J. Lindop, A. Gee, R. Prager University of Cambridge, Department of Engineering, Trumpington Street, Cambridge CB2 1PZ, UK Abstract: This paper describes a near-real-time system for acquiring and displaying 3D ultrasonic strain images using a mechanical sector transducer. For improved image quality and robustness, all signal processing is fully 3D, including 3D data windows, 3D least-squares fitting for the displacement-to-strain calculation, 3D strain normalization and full displacement tracking in the axial, lateral and elevational directions.
6. N. A. Cohn, S. Y. Emelianov, M. A. Lubinski and M. O’Donnell: IEEE Trans. Ultrason. , Freq. Contr. 44 (1997) 1304. 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.
Acoustical Imaging by J.F. Greenleaf, X. Zhang, C. Pislaru (auth.), Iwaki Akiyama (eds.)