Diffraction effects in insertion mode estimation of ultrasonic group velocity
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[1] C. Langton,et al. The measurement of broadband ultrasonic attenuation in cancellous bone. , 1984, Engineering in medicine.
[2] I Céspedes,et al. Diffraction correction methods for pulse-echo acoustic attenuation estimation. , 1990, Ultrasound in medicine & biology.
[3] G Kossoff,et al. Average velocity of ultrasound in the human female breast. , 1973, The Journal of the Acoustical Society of America.
[4] A. W. M. van den Enden,et al. Discrete Time Signal Processing , 1989 .
[5] Thomas A. Einhorn,et al. Perspectives: Ultrasound assessment of bone , 1993 .
[6] J. Cardoso,et al. Diffraction Effects in Pulse-Echo Measurement , 1984, IEEE Transactions on Sonics and Ultrasonics.
[7] J. Krautkrämer,et al. Ultrasonic Testing of Materials , 1969 .
[8] C. R. Hill,et al. Acoustic properties of normal and cancerous human liver-I. Dependence on pathological condition. , 1981, Ultrasound in medicine & biology.
[9] E. Papadakis. Correction for Diffraction Losses in the Ultrasonic Field of a Piston Source , 1959 .
[10] Emmanuel P. Papadakis,et al. Ultrasonic Phase Velocity by the Pulse‐Echo‐Overlap Method Incorporating Diffraction Phase Corrections , 1967 .
[11] T A Einhorn,et al. Ultrasound assessment of bone. , 1993, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[12] R. Bass,et al. Diffraction Effects in the Ultrasonic Field of a Piston Source , 1958 .
[13] H. Frost,et al. Technique for measuring ultrasonic velocity and attenuation changes in attenuative materials at temperature such as during sintering processes , 1991 .
[14] H. Seki,et al. Diffraction Effects in the Ultrasonic Field of a Piston Source and Their Importance in the Accurate Measurement of Attenuation , 1956 .
[15] Matthew O'Donnell,et al. Effects of Diffraction on Measurements of the Frequency-Dependent Ultrasonic Attenuation , 1983, IEEE Transactions on Biomedical Engineering.
[16] Emmanuel P. Papadakis. Ultrasonic Attenuation and Velocity in Three Transformation Products in Steel , 1963 .
[17] Ultrasonic Bone Tissue Characterization in Gaucher Disease Type I , 1992 .
[18] J.S. Heyman. NDE in aerospace-requirements for science, sensors and sense , 1989, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.
[19] H. J. Mcskimin. Empirical Study of the Effect of Diffraction on Velocity of Propagation of High‐Frequency Ultrasonic Waves , 1960 .
[20] K. A. Dines,et al. Ultrasonic Attenuation Tomography of Soft Tissues , 1979 .
[21] E. Carstensen. Acoustic Properties of Hemoglobin Solutions , 1954 .
[22] J.J. Kaufman,et al. Diffraction correction methods for insertion ultrasound attenuation estimation , 1993, IEEE Transactions on Biomedical Engineering.
[23] G. Kino. Acoustic waves : devices, imaging, and analog signal processing , 1987 .
[24] Roman Kuc,et al. Diffraction Effects in Reflected Ultrasound Spectral Estimates , 1984, IEEE Transactions on Biomedical Engineering.
[25] Robert C. Waag,et al. Physical principles of medical ultrasonics , 1989 .
[26] E. Papadakis. Ultrasonic Diffraction Loss and Phase Change for Broad‐Band Pulses , 1972 .
[27] Johan M. Thijssen,et al. Diffraction and Dispersion Effects on the Estimation of Ultrasound Attenuation and Velocity in Biological Tissues , 1985, IEEE Transactions on Biomedical Engineering.