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Kay Raum

Showing results (1-10 of 79) with videos related to

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Advances in Experimental Medicine and Biology|May 4, 2022
Clinical Devices for Bone AssessmentKay Raum, Pascal Laugier
Ultrasonics|July 1, 2008
Acoustic impedance changes in cartilage and subchondral bone due to primary arthrosisSonja Leicht, Kay Raum
Mathematical Biosciences and Engineering : MBE|October 30, 2020
High frequency ultrasound assesses transient changes in cartilage under osmotic loadingJana Zatloukalova, Kay Raum
IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control|August 21, 2007
Assessment of anisotropic tissue elasticity of cortical bone from high-resolution, angular acoustic measurementsSannachi Lakshmanan, Andreas Bodi, Kay Raum
Journal of Biomedical Materials Research. Part A|October 12, 2004
Frequency and resolution dependence of the anisotropic impedance estimation in cortical bone using time-resolved scanning acoustic microscopyKay Raum, Jan Reisshauer, Jörg Brandt
IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control|October 25, 2019
Estimation of Thickness and Speed of Sound in Cortical Bone Using Multifocus Pulse-Echo UltrasoundHuong Nguyen Minh, Juan Du, Kay Raum
Physics in Medicine and Biology|April 17, 2024
The respective and dependent effects of scattering and bone matrix absorption on ultrasound attenuation in cortical boneBrett Austin McCandless, Kay Raum, Marie Muller
The Journal of the Acoustical Society of America|June 5, 2026
Toward harmonizing ultrasound-based cortical bone characterization: A comparison of attenuation measurement techniquesBrett Austin McCandless, Kay Raum, Marie Muller
Computer Methods in Biomechanics and Biomedical Engineering|February 26, 2008
Derivation of the mesoscopic elasticity tensor of cortical bone from quantitative impedance images at the micron scaleQuentin Grimal, Kay Raum, Alf Gerisch, et al.
Ultrasound in Medicine & Biology|December 16, 2006
Prediction of biomechanical stability after callus distraction by high resolution scanning acoustic microscopyRobert Hube, Hermann Mayr, Werner Hein, et al.
Pageof 8

Showing results (1-10 of 79) with videos related to

Sort By:
Pageof 8
Advances in Experimental Medicine and Biology|May 4, 2022
Clinical Devices for Bone AssessmentKay Raum, Pascal Laugier
Ultrasonics|July 1, 2008
Acoustic impedance changes in cartilage and subchondral bone due to primary arthrosisSonja Leicht, Kay Raum
Mathematical Biosciences and Engineering : MBE|October 30, 2020
High frequency ultrasound assesses transient changes in cartilage under osmotic loadingJana Zatloukalova, Kay Raum
IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control|August 21, 2007
Assessment of anisotropic tissue elasticity of cortical bone from high-resolution, angular acoustic measurementsSannachi Lakshmanan, Andreas Bodi, Kay Raum
Journal of Biomedical Materials Research. Part A|October 12, 2004
Frequency and resolution dependence of the anisotropic impedance estimation in cortical bone using time-resolved scanning acoustic microscopyKay Raum, Jan Reisshauer, Jörg Brandt
IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control|October 25, 2019
Estimation of Thickness and Speed of Sound in Cortical Bone Using Multifocus Pulse-Echo UltrasoundHuong Nguyen Minh, Juan Du, Kay Raum
Physics in Medicine and Biology|April 17, 2024
The respective and dependent effects of scattering and bone matrix absorption on ultrasound attenuation in cortical boneBrett Austin McCandless, Kay Raum, Marie Muller
The Journal of the Acoustical Society of America|June 5, 2026
Toward harmonizing ultrasound-based cortical bone characterization: A comparison of attenuation measurement techniquesBrett Austin McCandless, Kay Raum, Marie Muller
Computer Methods in Biomechanics and Biomedical Engineering|February 26, 2008
Derivation of the mesoscopic elasticity tensor of cortical bone from quantitative impedance images at the micron scaleQuentin Grimal, Kay Raum, Alf Gerisch, et al.
Ultrasound in Medicine & Biology|December 16, 2006
Prediction of biomechanical stability after callus distraction by high resolution scanning acoustic microscopyRobert Hube, Hermann Mayr, Werner Hein, et al.
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