Numerical Methods for Ultrasonic Bone Characterization
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Publisher
Springer Netherlands
Link
http://link.springer.com/content/pdf/10.1007/978-94-007-0017-8_8.pdf
Reference81 articles.
1. E. Bossy, F. Padilla, F. Peyrin, and P. Laugier, Three-dimensional simulation of ultrasound propagation through trabecular bone structures measured by synchrotron microtomography, Physics in Medicine and Biology 50, 5545–5556 (2005).
2. Y. Nagatani, H. Imaizumi, T. Fukuda, M. Matsukawa, Y. Watanabe, and T. Otani, Applicability of finite-difference time-domain method to simulation of wave propagation in cancellous bone, Japanese Journal of Applied Physics Part 1-Regular Papers Brief Communications and Review Papers 45, 7186–7190 (2006).
3. P. Nicholson, P. Moilanen, T. Kärkkäinen, J. Timonen, and S. Cheng, Guided ultrasonic waves in long bones: modelling, experiment and application, Physiological Measurements 23, 755–768 (2002).
4. E. Bossy, M. Talmant, and P. Laugier, Three-dimensional simulations of ultrasonic axial transmission velocity measurement on cortical bone models, Journal of the Acoustical Society of America 115, 2314–2324 (2004).
5. P. Moilanen, M. Talmant, V. Bousson, P. H. F. Nicholson, S. Cheng, J. Timonen, and P. Laugier, Ultrasonically determined thickness of long cortical bones: two-dimensional simulations of in vitro experiments, Journal of the Acoustical Society of America 122, 1818–1826 (2007).
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