SaadaAdel S., Elasticity: Theory and Applications, Chapt. 14 (Pergamon Press, NY, 1983).
2.
VargheseT.DonohueK.D., Characterization of tissue microstructure scatterer distribution with spectral correlation, Ultrasound Imaging15, 238–254 (1993).
3.
VargheseT.DonohueK.D., Mean Scatterer spacing estimates with spectral correlation, J. Acoust. Soc. Amer.96, 3504–3515 (1994).
4.
SchmitzG.ErmertH.SengeT.: Tissue Characterization of the Prostate using Kohonen-Maps, in Proc. 1994 IEEE Ultrasonics Symposium.
RumelhartD.E.HintonG.E.WilliamsR.J., Learning representation by backpropagating errors, Nature323, 533–536 (1986).
8.
JainA.K.DubesR.C., Algorithms for Clustering Data (Prentice-Hall, NY1988).
9.
LockwoodG.R.FosterF.S., Optimizing Sparse Two-dimensional Transducer Arrays Using an Effective Aperture Approach, in 1994 IEEE Ultrason. Symp. Proc.
10.
LockwoodJ.C.WilletteJ.G., High-speed method for computing the exact solution for the pressure variations in the nearfield of a baffled piston, J. Acoust. Soc. Am.53, 735–741 (1973).
11.
ArthurR.M.BroadstoneS.R., The effect of background velocity variation on the point-spread function of ultrasonic transducer arrays, in 1987 Ultrasonics Symposium Proc., IEEE Cat. No. 87CH242-7, vol. 2, 947–950 (1987).
12.
BerkhoffA.P.van den BergP.M.ThijssenJ.M., Simulation of wave propagation through aberrating layers of biological media, in Proc. IEEE UFFC Ultrasonics Symposium (Cannes, 1–4 Nov. 1994).
13.
BerkhoffA.P.van den BergP.M.Thijssen, Iterative calculation of reflected and transmitted acoustic waves at a rough interface, IEEE Trans. Ultrason. Ferroel. Freq. Control42 (1995) (in press).
14.
KossoffG.CarpenterD.A.RobinsonD.E.OstryD.HoP.L., A sonographic technique to reduce beam distortion by curved interfaces, Ultrasound Med. Biol.15, 375–382 (1989).
15.
CarpenterD.A.RobinsonD.E.HoP.L.MartinD.C.C.IsaacsP., Body wall aberration correction in medical ultrasonic images using synthetic-aperture data, in Proc. IEEE Ultrasonics Symposium, Vol. 2, pp. 1131–1134 (1993).
16.
WalkerW.F.TraheyG.E., A fundamental limit on delay estimation using partially correlated speckle signals, IEEE Trans. Ultrason., Ferroelec. Freq. Contr. (in press).
17.
MallartR.FinkM., The Van Cittert-Zernike theorem in pulse echo measurements, J. Acoust. Soc. Amer.90, 2718–27 (1991).
18.
FlaxS.W.O'DonnellM., Phase aberration correction using signals from point reflectors and diffuse scatters: basic principles, IEEE Trans. Ultrasonics, Ferroelec. Freq. Contr.35758–767 (1988).
19.
TraheyG.E.ZhaoD.MiglinJ.A.SmithS.W., Experimental results with a real-time adaptive ultrasonic imaging system for viewing through distorting media, IEEE Trans. Ultrasonics, Ferroelec. Freq. Contr.37, 418–427 (1990).
20.
PradaC.WuF.FinkF., The iterative time reversal mirror: a solution to self focusing in the pulse echo mode, J. Acoust. Soc. Am.90, 1119–1129 (1991).
21.
HamakerJ.P.O'SullivanJ.D.NoordamJ.E., Image sharpness, Fourier optics, and redundant-spacing interferometry, J. Opt. Soc. Am.67, 1122–1123 (1977).
22.
HiramaM.SatoT., Imaging through an inhomogeneous layer by least-mean-square error fitting, J. Acoust. Soc. Am.75, 1142–1147 (1984).
23.
RachlinD., Direct estimation of aberration delays in pulse-echo image systems, J. Acoust. Soc. Am.88, 191–198 (1990).
24.
LevinsonS.GaoL.AlamS.K.YeungF.ParkerK., Approaches to the sonoelastic imaging of dynamic events, Ultrasonic Imaging16, 40 (1994).
25.
LevinsonS.YeungF.WalkerW.TraheyG., A sonoelastic imaging display for 2-D speckle tracking, Ultrasonic Imaging16, 38 (1994) (abstract).
26.
CoffieldK.S.SpeightsV.O.BrawnP.N.RiggsM.W., Ultrasound detection of prostate cancer in postmortem specimens with histological correction. J. Urol.14, 822–826 (1992).
27.
OungH.ForsbergF., A Time-varying Kernel for Ultrasound Doppler Spectra, in Proc. IEEE-SP Int. Symp. Time-Freq. & Time-Scale Analysis, pp. 556–559 (1994).
28.
J. Acoust. Soc. Am., 69, 580–588 (1981).
29.
J. Acoust. Soc. Am., 85, 2634–2641 (1989).
30.
Ultrasound Med. Biol.17, 723 (1991).
31.
IEEE Trans. Biomed. Eng.40, 953 (1993).
32.
LaugierP.GiatP.BergerG., Broadband ultrasonic attenuation imaging: a new imaging technique of the os calcis, Calcif. Tissue Int., 54, 83–86 (1994).