[1]
K. K. Shung, M. B. Smith, and B. Tsui, Principles of Medical Imaging, Academic Press, (1992).
Google Scholar
[2]
J. Toyras, H. Kroger, and J. S. Jurvelin, Bone properties as estimated by mineral density, ultrasound attenuation and velocity, Bone, pp.725-731, (1999).
DOI: 10.1016/s8756-3282(99)00221-5
Google Scholar
[3]
S. A. Goss, R. L. Johnston, and F. Dunn, Comprehensive compilation of empirical ultrasonic properties of mammalian tissues, J. Acoust. Soc. Amer. Vol. 64, pp.423-457, (1978).
DOI: 10.1121/1.382016
Google Scholar
[4]
S. H. Wang and K. K. Shung, An approach for measuring ultrasonic backscattering from biological tissues with focused transducers, IEEE Trans. BME, pp.549-554, (1997).
DOI: 10.1109/10.594895
Google Scholar
[5]
S. H. Wang and K. K. Shung. In vivo measurements of ultrasonic backscattering in blood, IEEE Trans. Ultrason. Ferroelect. Freq. Contr., 48: 425-431, (2001).
DOI: 10.1109/58.911725
Google Scholar
[6]
R. F. Wagner, S. W. Smith, J. W. Sandrik, and H. Lopez, Statistical of speckle in ultrasound B-scans, IEEE Trans. Sonics Ultrason., pp.156-163, (1983).
DOI: 10.1109/t-su.1983.31404
Google Scholar
[7]
L. Weng, J. M. Reid, P. M. Shankar, and K. Soetanto, A Ultrasound speckle analysis based on the K-distribution, J. Acoust. Soc. Am., pp.2992-2995, (1991).
Google Scholar
[8]
P. M. Shankar, A general statistical model for ultrasonic backscattering from tissues, IEEE UFFC, pp.727-736, (2000).
Google Scholar
[9]
R. C. Molthen, P. M. Shankar, and J. M. Reid, Characterization of ultrasonic B-scans using non-Rayleigh statistics, Ultrasound in Medicine and Biology, 21(2), pp.161-170, (1995).
DOI: 10.1016/s0301-5629(94)00105-7
Google Scholar
[10]
Y. H. Wang, T. W. Chung, J. Y. Lai, J. J. Hsu, and Y. H. Lin, A viscometric method to study the effects of hematocrit of blood and different surfaces of biomaterials on blood clot formation, J. Chin. Chem. Engrs., Vol. 31(1), pp.27-32, (2000).
Google Scholar