Acousto-optic, point receiver hydrophone probe for operation up to 100 MHz.
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P A Lewin | A. Daryoush | P. Lewin | M. El-Sherif | S. Umchid | C Mu | S Umchid | A Daryoush | M El-Sherif | C. Mu
[1] F. Foster,et al. Clinical use of ultrasound biomicroscopy. , 1991, Ophthalmology.
[2] J W Hunt,et al. In vitro high resolution intravascular imaging in muscular and elastic arteries. , 1992, Journal of the American College of Cardiology.
[3] H. Ermert,et al. A 100-MHz ultrasound imaging system for dermatologic and ophthalmologic diagnostics , 1996, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.
[4] A. Fleischer. Sonographic depiction of tumor vascularity and flow: from in vivo models to clinical applications. , 2000, Journal of ultrasound in medicine : official journal of the American Institute of Ultrasound in Medicine.
[5] C. Koch,et al. Primary calibration of hydrophones with extended frequency range 1 to 70 MHz using optical interferometry , 1999, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.
[6] F. Foster,et al. Applications for multifrequency ultrasound biomicroscopy in mice from implantation to adulthood. , 2002, Physiological genomics.
[7] Takeshi Ozeki,et al. Efficient power coupling using taper-ended multimode optical fibres , 1976 .
[8] E. G. Radulescu,et al. Calibration of ultrasonic hydrophone probes up to 100 MHz using time gating frequency analysis and finite amplitude waves. , 2003, Ultrasonics.
[9] R. Silverman,et al. Estimation of blood velocity with high frequency ultrasound , 1996, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.
[10] L. M. Barker,et al. Shock‐Wave Studies of PMMA, Fused Silica, and Sapphire , 1970 .
[11] D J Coleman,et al. High-frequency ultrasound imaging and spectral analysis in traumatic hyphema. , 1993, Ophthalmology.
[12] D. Gloge,et al. Propagation Effects in Optical Fibers , 1975 .
[13] J. Staudenraus,et al. Fibre-optic probe hydrophone for ultrasonic and shock-wave measurements in water , 1993 .
[14] P. Lewin,et al. A novel method for determining calibration and behavior of PVDF ultrasonic hydrophone probes in the frequency range up to 100 MHz , 2000, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.
[15] Ch. Koch,et al. Phase calibration of hydrophones: heterodyne time-delay spectrometry and broadband pulse technique using an optical reference hydrophone , 2004 .
[16] E. Chérin,et al. A new ultrasound instrument for in vivo microimaging of mice. , 2002, Ultrasound in medicine & biology.
[17] F. Foster,et al. Principles and applications of ultrasound backscatter microscopy , 1993, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.
[18] R. Silverman,et al. Epithelial and corneal thickness measurements by high-frequency ultrasound digital signal processing. , 1994, Ophthalmology.
[19] H. S. Yadav,et al. Measurement of refractive index of water under high dynamic pressures , 1973 .
[20] F. Stuart Foster,et al. High-frequency color flow imaging of the microcirculation , 2000 .
[21] E. Chérin,et al. Evaluation of acoustical parameter sensitivity to age-related and osteoarthritic changes in articular cartilage using 50-MHz ultrasound. , 1998, Ultrasound in medicine & biology.
[22] L From,et al. A 40-100 MHz B-scan ultrasound backscatter microscope for skin imaging. , 1995, Ultrasound in medicine & biology.
[23] D J Coleman,et al. Imaging and spectrum analysis of contrast agents in the in vivo rabbit eye using very-high-frequency ultrasound. , 1998, Ultrasound in medicine & biology.
[24] Andrew Kalisz,et al. Interfacing very high frequency transducers to digital-acquisition scanning systems , 1992, SPIE Optics + Photonics.
[25] D. R. Bacon,et al. Calibration of medical ultrasonic equipment-procedures and accuracy assessment , 1988, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.