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Titlebook: Ultrasonic Tissue Characterization; Floyd Dunn (Professor of Electrical Engineering, B Conference proceedings 1996 Springer Japan 1996 Dia

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Some Relationships between Echocardiography, Quantitative Ultrasonic Imaging, and Myocardial Tissue ntation of one approach to the goal of tissue characterization. The original manuscripts referenced provide acknowledgment of the creative contributions of many co-authors from our Laboratory, including especially Julio E. Perez, M.D. and Samuel A. Wickline, M.D. who have been essential collaborator
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Conference proceedings 1996earch effort. The second reason for this conference is that the application of ultrasound has become wide spread and indispensable in the routine clinical activities of medicine. But there have not been many breakthroughs in terms of quantitative and qualitative measurement of the living body tissue
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joint research effort. The second reason for this conference is that the application of ultrasound has become wide spread and indispensable in the routine clinical activities of medicine. But there have not been many breakthroughs in terms of quantitative and qualitative measurement of the living body tissue978-4-431-68384-1978-4-431-68382-7
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Ultrasonic Characterization of Tissue from Measurements of Scattering as a Function of Angle and FreThis chapter reviews ultrasonic scattering research at the University of Rochester. First, models for the measurement of intrinsic scattering properties of tissue are outlined. Next, measurements that illustrate the application of these models are summarized. Then, new apparatus and planned investigations are noted.
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Sound Field of Disk and Concave Circular TransducersLiving tissue is inhomogeneous media for ultrasound propagation. For example, sound speed in tissue depends on the structure and the contents of materials such as collagen and fat. Thus, numerical values of the acoustical parameters can be helpful for medical diagnosis.
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Elastography: A Method for Imaging the Elastic Properties of Tissue ,The medical motivations for looking into imaging of tissue elasticity are listed below:
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High Frequency Acoustic Properties of Tumor TissueUltrasonic tissue characterization of tumor tissue is important for two reasons; first that the acoustic parameters provide the physical mechanical properties not determinable by for example, optical microscopy, and second that such data provides information for understanding echographic imaging.
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