08:00 am -09:30 am |
Oral — Wednesday, September 21, 2016 |
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Session 1H. |
Session 2H. |
Session 3H. |
Session 4H. |
Session 5H. |
Session 6H. |
Session 7H. |
MBF: Angiography and functional imaging |
MEL: Novel shear wave imaging methods |
MTH: Histotripsy, sonothrombolysis, and transcranial applications |
MSP: Medical signal processing |
NDE |
PA Thin Films and Actuators |
Microacoustic Materials and Propagation |
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Chair: Alfred Yu |
Chair: Mostafa Fatemi |
Chair: Jean-Yves Chapelon |
Chair: John Hossak |
Chair: Edward Haeggstrom |
Chair: John Larson |
Chair: Mauricio Pereira da Cunha |
University of Waterloo |
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INSERM |
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University of Helsinki |
Avago Technologies |
University of Maine |
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Auditorium de Ronsard |
Auditorium Descartes |
Room Chambord |
Room Cheverny |
Room Villandry |
Room Amboise |
Room Langeais |
8:00 AM |
1H-1 Acoustic Angiography – Superharmonic Contrast Imaging to Assess Angiogenesis as a Biomarker of Cancer |
2H-1 A parametric study on acoustic particle palpation for elasticity imaging: The effects of ultrasound parameters, tissue stiffness and microbubble concentration |
3H-1 Noninvasive Thrombolysis using Microtripsy in a Porcine Deep Vein Thrombosis Model |
4H-1 Automatic Classification of Cardiac Disease Based on Strain (rate) Data: Handling Missing Curves |
5H-1 Ultrasonic material characterization using matching pursuit algorithm with experimental dictionary |
6H-1 The frequency switchable resonator consisting of polarity inverted Pb(Zr,Ti)O<sub>3</sub>/PbTiO<sub>3</sub> epitaxial multilayer |
7H-1 Bulk Acoustic Wave Resonator Integrated Microfluidics for Rapid and High Efficiency Fluids Mixing and Bioparticle Trapping |
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Paul Dayton1, Sarah Shelton1, Brooks Lindsey1, Ryan Gessner1,2, Yueh Lee3, Stephen Aylward4, Mike Lee5, Emmanuel Cherin5, Jay Son5, Chris Chaggares6, F. Stuart Foster5 |
Hasan Koruk1,2, Niloufar Saharkhiz1, James Choi1 |
Xi Zhang1, Jonathan Macoskey1, Hitinder Gurm2, Gabe Owens3, Charles Cain1, Matthew Pizzuto3, Zhen Xu1 |
Mahdi Tabassian1,2, Martino Alessandrini1,2, Luca De Marchi2, Guido Masetti2, Jan D’hooge1 |
Julien P. Fortineau1, François Vander Meulen1, Jérôme Fortineau2, Guy Feuillard2 |
Takeshi Mori1,2, Masashi Suzuki2, Takahiko Yanagitani2 |
Weiwei Cui1, Meihang He1, Hongxiang Zhang1, Yang Yang1, Xuexin Duan1 |
1Joint Department of Biomedical Engineering, The University of North Carolina at Chapel Hill and North Carolina State University at Raleigh, Chapel Hill, NC, USA, 2SonoVol, Inc., Durham, NC, USA, 3Radiology, The University of North Carolina at Chapel Hill, Chapel Hill, NC, NC, USA, 4Kitware, Inc, USA, 5Medical Biophysics, Sunnybrook Health Sciences Centre, Canada, 6Visualsonics, Inc, Canada |
1Department of Bioengineering, Imperial College London, London, United Kingdom, 2Mechanical Engineering Department, MEF University, Istanbul, Turkey |
1Department of Biomedical Engineering, University of Michigan, Ann Arbor, USA, 2Department of Internal Medicine, University of Michigan, Ann Arbor, USA, 3Department of Pediatrics and Communicable Diseases, University of Michigan, Ann Arbor, USA |
1Department of Cardiovascular Sciences, KU Leuven, Leuven, Belgium, 2Department of Electrical, Electronic and Information Engineering, University of Bologna, Bologna, Italy |
1Université François Rabelais de Tours, CNRS, CEA, INSA Centre Val de Loire, GREMAN UMR 7347, Blois, France, 2INSA Centre Val de Loire, CNRS, CEA, Université François Rabelais de Tours, GREMAN UMR 7347, France |
1Nagoya Institute of Technology, Nagoya, Japan, 2Waseda University, Tokyo, Japan |
1State Key Laboratory of Precision Measuring Technology and Instruments, Tianjin University, China, People’s Republic of |
8:15 AM |
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2H-2 Regularized Wavelength Average Velocity Estimator for Quantitative Ultrasound Elastography |
3H-2 In Vivo Histotripsy Brain Treatments |
4H-2 A fast and uniform procedure for computing time-harmonic pressures and transients for ultrasound transducers. |
5H-2 Ultrasonic Guided Wave Testing of Anchor Rods Embedded in Soil |
6H-2 Evaluation of viscous liquid using resonance and anti-resonance of thickness-shear mode resonator consisting of c-axis parallel oriented ZnO film |
7H-2 Surface acoustic wave momentum |
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Eduardo Gonzalez1, Roberto Lavarello1, Benjamin Castaneda1 |
Jonathan Sukovich1, Charles Cain1, Timothy Hall1, Steven Allen1, Aditya Pandey2, Neeraj Chaudhary3, Sandra Camelo-Piragua4, John Snell5, Zhiyuan Xu6, Jon Cannata7, Dejan Teofilovic7, Jim Bertolina7, Zhen Xu1 |
Jens Munk Hansen1 |
Masanari Shoji1, Akihiko Hirata1 |
Rikuya Iwanaga1, Shinji Takayanagi2, Yoshiaki Watanabe1, Mami Matsukawa1, Toshiyuki Tsuchiya3, Takahiko Yanagitani4 |
Sergey Biryukov1, Andrei Sotnikov1,2, Hagen Schmidt1 |
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1Pontificia Universidad Católica del Perú, Lima, Lima, Peru |
1Biomedical Engineering, University of Michigan, Ann Arbor, Michigan, USA, 2Neurosurgery, University of Michigan, Ann Arbor, Michigan, USA, 3Radiology, University of Michigan, Ann Arbor, Michigan, USA, 4Pathology, University of Michigan, Ann Arbor, Michigan, USA, 5Focused Ultrasound Foundation, Charlottesville, Virginia, USA, 6University of Virginia, Charlottesville, Virginia, USA, 7Histosonics, Inc., Ann Arbor, Michigan, USA |
1BK Ultrasound, Herlev, Denmark |
1NTT Device Technology Laboratories, NTT corporation, Atsugi-shi, Kanagawa Pref., Japan |
1Doshisha University, Kyotanabe, Japan, 2Nagoya institute of technology, Nagoya, Japan, 3Kyoto University, Kyoto, Japan, 4Waseda University, Tokyo, Japan |
1IFW Dresden, SAWLab Saxony, Dresden, Germany, 2Ioffe Institute, St. Petersburg, Russian Federation |
8:30 AM |
1H-2 Functional Ultrasound Imaging of the Brain Activity in Human Neonates |
2H-3 Induction of shear waves by laser in a soft medium |
3H-3 Interaction of two crossing shockwaves: an experimental and numerical study. |
4H-3 Entropy analysis of the velocity fields of ultrasound contrast agents for prostate cancer localization |
5H-3 Finite Element Modeling of Ultrasonic Nonlinearity for Creep Damage of Steel P91 |
6H-3 Effects of energetic negative ions generated from sputtering targets on ScAlN film growth |
7H-3 Validity Evaluation of Sc<sub>x</sub>Al<sub>1-x</sub>N Material Constants Based on SAW Characteristics |
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Charlie Demene1, Miguel Bernal1, Catherine Delanoe2, Elisabeth Harribaud2, Mathieu Pernot1, Mickael Tanter1, Olivier Baud3 |
Pol Grasland-Mongrain1, Yuankang Lu1,2, Frédéric Lesage2,3, Stefan Catheline4,5, Guy Cloutier1,6 |
Bastien Arnal1, Mickael Tanter1 |
Ruud JG van Sloun1, Libertario Demi1, Arnoud W Postema2, Jean JMCH de la Rosette2, Hessel Wijkstra1,2, Massimo Mischi1 |
Yanyan Liu1, Shiwei Ma1, Haojie Yuan1 |
Shinji Takayanagi1, Mami Matsukawa2, Takahiko Yanagitani3 |
Gongbin Tang1,2, Tao Han1, Kenta Yamazaki2, Qiaozhen Zhang1,2, Tatsuya Omori2, Kenya Hashimoto2 |
1Institut Langevin, CNRS UMR 7587, Inserm U979, ESPCI Paris, PSL Research University, Paris, France, 2Assistance Publique – Hôpitaux de Paris, Neurophysiology Unit, Robert Debré University Hospital, Paris, France, 3Assistance Publique – Hôpitaux de Paris, Neonatal Intensive Care Unit, Inserm U1141, Fondation PremUp, Robert Debré University Hospital, Paris, France |
1Laboratory of Biorheology and Medical Ultrasonics, University of Montreal Hospital Research Center (CRCHUM), Montréal, Québec, Canada, 2Department of Electrical Engineering, École Polytechnique of Montreal, Montréal, Québec, Canada, 3Institute of Biomedical Engineering, École Polytechnique of Montreal, Montréal, Québec, Canada, 4Laboratory of Therapeutic Applications of Ultrasound, INSERM, Lyon, France, 5University of Lyon, Lyon, France, 6Department of Radiology, Radio-Oncology and Nuclear Medicine and Institute of Biomedical Engineering, University of Montreal, Montréal, Québec, Canada |
1Institut Langevin, ESPCI Paris, INSERM U979, CNRS UMR7587, Paris, France |
1Dept. of Electrical Engineering, Lab. of Biomedical Diagnostics, Eindhoven University of Technology, Eindhoven, Netherlands, 2Academic Medical Center University of Amsterdam, Netherlands |
1Shanghai Key Laboratory of Power Station Automation Technology, Shanghai University, China, People’s Republic of |
1Nagoya Institute of Technology, Nagoya, Japan, 2Doshisha University, Kyotanabe, Japan, 3Waseda University, Tokyo, Japan |
1Shanghai Jiao Tong University, Shanghai, China, People’s Republic of, 2Chiba University, Chiba, Japan |
8:45 AM |
1H-3 Towards functional ultrasound imaging of the pigeon brain |
2H-4 Quantitative MR-guided transient shear wave imaging for tissue elasticity assessment |
3H-4 Effects of Dosing and Focal Spacing in Rapid Ablation of Large Tissue Volume Using Histotripsy with Electronic Focal Steering |
4H-4 Accelerated randomized blind source suppression of quasi-static reverberant artifacts in echocardiography |
5H-4 Nonlinear Rayleigh surface waves for determining yielding of titanium alloy materials |
6H-4 Improvement of electromechanical properties in c-axis parallel oriented ZnO film by RF magnetron sputtering with negative ion bombardment |
7H-4 Material parameter determination in BAW resonators using combined dispersion and electrical response input data |
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Richard Rau1, Pieter Kruizinga2, Wolfgang Scheffer1, Markus Belau1, Antonius FW van der Steen2,3, Nico de Jong2,4, Georg Maret1 |
Yu Liu1, Jingfei Liu1, Brett Fite1, Josquin Foiret1, Kent Leach1, Katherine Ferrara1 |
Jonathan Lundt1, Steven Allen2, Jonathan Sukovich1, Timothy Hall1, Zhen Xu1 |
Sushanth Sathyanarayana1, Scott Acton2, John Hossack1 |
Shifeng Guo1, Lei Zhang1, Meysam Sharifzadeh Mirshekarloo1, Shuting Chen1, Yi Fan Chen1, Zheng Zheng Wong1, Zhiyuan Shen1, Huajun Liu1, Kui Yao1 |
Kazuma Mori1, Shinji Takayanagi2, Mami Matsukawa1, Takahiko Yanagitani3 |
Susanne Kreuzer1, Ralph Rothemund1, Gernot Fattinger1 |
1University of Konstanz, Germany, 2Thorax Center, Erasmus MC, Netherlands, 3The Netherlands Heart Institute, Utrecht, Netherlands, 4Applied Physics, Acoustical Wavefield Imaging, Delft University of Technology, Delft, Netherlands |
1Biomedical Engineering, UC Davis, Davis, California, USA |
1Biomedical Engineering, University of Michigan, Ann Arbor, Michigan, USA, 2Biomedical Engineering, University of Michigan, USA |
1Biomedical Engineering, University of Virginia, Charlottesville, Virginia, USA, 2Electrical and Computer Engineering, University of Virginia, Charlottesville, Virginia, USA |
1Institute of Materials Research and Engineering, A*STAR, Singapore, Singapore |
1Doshisha University, Kyotanabe, Japan, 2Nagoya Institute of Technology, Japan, 3Waseda University, Japan |
1Qorvo, Apopka, FL, USA |
9:00 AM |
1H-4 Spatiotemporal response of rat visual cortex during moving stimuli using Functional Ultrasound (fUS) Imaging |
2H-5 Ultrasound-based shear wave MRE for the biomechanical characterization of complex soft tissues |
3H-5 A Numerical Study on the Oblique Focus in MR-guided Transcranial Focused Ultrasound |
4H-5 Blind Source Separation – Based Motion Detector for Sub-Micrometer, Periodic Displacement in Ultrasonic Imaging |
5H-5 Flaw detection in rotating structures by Lamb mode analysis |
6H-5 A Cryogenic Ultrasonic Actuator Using a Torsional Transducer |
7H-5 LiNbO<sub>3</sub> Films for Acoustic Wave Applications |
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Marc Gesnik1, Kevin Blaize2, Alexandre Dizeux1, Serge Picaud2, José-Alain Sahel2, Mathias Fink1, Thomas Deffieux1, Jean-Luc Gennisson1, Mickaël Tanter1 |
Simon Chatelin1,2, Nadège Corbin1, Isabelle Charpentier1, Jonathan Vappou1 |
Alec Hughes1,2, Yuexi Huang1, Aki Pulkkinen3, Michael L Schwartz4, Andres M Lozano5, Kullervo Hynynen1,2 |
Md Murad Hossain1, Diwash Thappa2, Justin Sierchio2, Amy oldenburg2, Caterina Gallippi1 |
Daniel Veira Canle1, Ari Salmi2, Edward Hæggström2 |
Takefumi Kanda1, Masataka Kuroda1, Daisuke Yamaguchi2, Koichi Suzumori3 |
Ausrine Bartasyte1, Stefania Oliveri1, Thomas Baron1, Roland Salut1, Samuel Margueron1, Sylvain Ballandras2, Guillaume Saint-Girons3, Brice Gautier3, Romain Bachelet3, David Albertini3, Pascal Boulet4 |
1Institut Langevin (ESPCI Paris, PSL Research University, CNRS UMR 7587, INSERM U979), Paris, France, 2Institut de la Vision (INSERM U986), Paris, France |
1ICube, CNRS, University of Strasbourg, Strasbourg, France, 2IHU, Institute of Image-Guided Surgery, Strasbourg, France |
1Physical Sciences Platform, Sunnybrook Research Institute, Toronto, Canada, 2Department of Medical Biophysics, University of Toronto, Toronto, Canada, 3Department of Applied Physics, University of Eastern Finland, Kuopio, Finland, 4Division of Neurosurgery, Department of Surgery, Sunnybrook Health Sciences Centre, Toronto, Canada, 5Division of Neurosurgery, Department of Surgery, Krembil Neuroscience Centre, Toronto Western Hospital, Toronto, Canada |
1Department of Biomedical Engineering, University of North Carolina, Chapel Hill, Chapel hill, North Carolina, USA, 2Department of Physics and Astronomy, UNC, Chapel Hill, University of North Carolina, Chapel Hill, Chapel hill, North Carolina, USA |
1University of Helsinki, Helsinki, Finland, 2Material Physics, Electronic Research Laboratory, University of Helsinki, Helsinki, Finland |
1Okayama University, Okayama, Japan, 2Saitama University, Japan, 3Tokyo Institute of Technology, Japan |
1Institute FEMTO-ST, University of Bourgogne Franche-Comté, Besançon, France, 2frecInIsys, Besançon, France, 3Lyon Institute of Nanotechnology, CNRS (UMR 5270) – University of Lyon, Ecully, France, 4Institute Jean Lamour, CNRS (UMR 7198) – University of Lorraine, Nancy, France |
9:15 AM |
1H-5 Functional ultrasound imaging of the thalamo-cortical auditory tract and high resolution mapping of the tonotopic organization of the auditory cortex in awake ferrets |
2H-6 Remote induction of shear waves using a Transcranial Magnetic Stimulation coil and a magnet |
3H-6 Transcranial Histotripsy Aberration Correction with Drainage Catheter Integrated Hydrophone for Treatment of Intracerebral Hemorrhage |
4H-6 Phase-Corrective Compressed-Beamforming for Ultrasound Imaging |
5H-6 Mapping the material microstructure of safety-critical components using ultrasonic phased arrays |
6H-6 Highly Responsive and Stable Flow Control Valve using a PZT transducer |
7H-6 Acoustic Multiplexing by Beamsteering for SAW Chemical Multisensors |
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Charlie Demene1, Célian Bimbard2, Marc Gesnik1, Susanne Radtke-Schuller2, Shihab Shamma2, Yves Boubenec2, Mickael Tanter1 |
Pol Grasland-Mongrain1, Erika Miller-Jolicoeur1, An Tang2,3, Stefan Catheline4,5, Guy Cloutier1,3 |
Tyler Gerhardson1, Jonathan R. Sukovich1, Aditya S. Pandey2, Zhen Xu1 |
Bo Zhang1, Jean-Luc Robert2, Guillaume David3 |
Katherine Tant1, Erica Galetti2, Anthony Mulholland1, Andrew Curtis2, Anthony Gachagan3 |
Daisuke HIROOKA1, Tomomi YAMAGUCHI1, Naomichi FURUSHIRO1, Koichi SUZUMORI2, Takefumi KANDA3 |
Alice Fischerauer1, Anna Geyer1, Christian Schwarzmüller1, Gerhard Fischerauer1 |
1Institut Langevin, CNRS UMR 7587, Inserm U979, ESPCI ParisTech, PSL Research University, Paris, France, 2Laboratoire des Systèmes Perceptifs, Équipe Audition, CNRS UMR 8248, École Normale Supérieure, Paris, France |
1Laboratory of Biorheology and Medical Ultrasonics, University of Montreal Hospital Research Center (CRCHUM), Montréal, Québec, Canada, 2Department of Radiology and Research Center, University of Montreal Hospital (CHUM), Montréal, Québec, Canada, 3Department of Radiology, Radio-Oncology and Nuclear Medicine, University of Montreal, Montréal, Québec, Canada, 4Laboratory of Therapeutic Applications of Ultrasound, INSERM, Lyon, France, 5University of Lyon, Lyon, France |
1Biomedical Engineering, University of Michigan, USA, 2Neurosurgery, University of Michigan, USA |
1Medisys, Philips Research France, France, 2Philips Research North America, USA, 3Columbia University, USA |
1Mathematics and Statistics, University of Strathclyde, Glasgow, United Kingdom, 2Geosciences, The University of Edinburgh, Edinburgh, United Kingdom, 3Centre of Ultrasonic Engineering, University of Strathclyde, Glasgow, United Kingdom |
1Kansai University, Japan, 2Tokyo Institute of Technology, Japan, 3Okayama University, Japan |
1Chair of Measurement and Control Systems, University of Bayreuth, Bayreuth, Germany |
10:30 am -12:00 pm |
Oral — Wednesday, September 21, 2016 |
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Session 1I. |
Session 2I. |
Session 3I. |
Session 4I. |
Session 5I. |
Session 6I. |
Session 7I. |
MTH: Ultrasound therapy |
MEL: Liver elasticity imaging |
MBF: Innovations in algorithms and methods |
MCA: Microvascular and perfusion imaging |
Wave Propagation |
Microacoustic Modeling |
Therapeutics |
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Chair: Ralf Seip |
Chair: Kathy Nightingale |
Chair: Lasse Lovstakken |
Chair: Massimo Mischi |
Chair: Walter Arnold |
Chair: Marc Solal |
Chair: Xiaoning Jiang |
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Norwegian University of Science and Technology |
Eindhoven University of Technology |
Saarland University |
Qorvo |
North Carolina State University |
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Auditorium de Ronsard |
Auditorium Descartes |
Room Chambord |
Room Cheverny |
Room Villandry |
Room Amboise |
Room Langeais |
10:30 AM |
1I-1 Ultrasound for Correction of Secretory Deficiencies as a Potential Novel Treatment for Type 2 Diabetes |
2I-1 Measurement of Liver Stiffness Using Single Tracking Location Shear Wave Elasticity Imaging in a Rat Model |
3I-1 Block-wise Adaptive Clutter Filtering for Ultrasound Microflow Imaging |
2F-1 Early assessment of tumor response to radiation therapy using acoustic angiography microvascular imaging |
5I-1 Finite aperture influence on energy concentration, frequency shift, and signal enhancement, for acoustic transmission in the negative group velocity region of the S1 leaky Lamb mode |
6I-1 Causal P-matrix description of leaky SAW devices |
7I-1 High-intensity focused ultrasound treatment combined with high-frame-rate imaging |
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Ivan Suarez Castellanos1, Bogdan Balteanu1, Tania Singh1, Joshua Cohen2, Aleksandar Jeremic3, Vesna Zderic1 |
Jonathan Langdon1, Etana Elegbe1, Laurentius Osapoetra1, Tristan Ford1, Stephen McAleavey1 |
Pengfei Song1, Armando Manduca2, Joshua D. Trzasko1, Shigao Chen1 |
Sandeep Kasoji1, Judith Rivera1, Ryan Gessner1,2, Xiao Sha Chang3, Paul A. Dayton1 |
Magne Aanes1,2, Kjetil Daae Lohne2, Per Lunde1,2, Magne Vestrheim1 |
Markus Mayer1, Gholamreza Dadgar-Javid1, Thomas Ebner1, Karl Wagner1 |
Shin-ichiro Umemura1, Shin Yoshizawa2, Ryo Takagi2 |
1Department of Biomedical Engineering, The George Washington University, Washington, DC, USA, 2Division of Endocrinology & Metabolism, GW Medical Faculty Associates, Washington, DC, USA, 3Department of Biological Sciences, The George Washington University, Washington, DC, USA |
1Department of Biomedical Engineering, University of Rochester, Rochester, New York, USA |
1Department of Radiology, Mayo Clinic College of Medicine, Rochester, Minnesota, USA, 2Department of Physiology and Biomedical Engineering, Mayo Clinic College of Medicine, Rochester, Minnesota, USA |
1Joint Dept. of Biomedical Engineering, University of North Carolina Chapel Hill/North Carolina State University, CHAPEL HILL, NC, USA, 2Sonovol, USA, 3Radiation Oncology, UNC School of Medicine, Chapel Hill, NC, USA |
1Department of Physics and Technology, University of Bergen, Bergen, Norway, 2Christian Michelsen Research AS, Bergen, Norway |
1TDK corporation, Germany |
1Biomedical Engineering, Tohoku University, Sendai, Miyagi, Japan, 2Engineering, Tohoku University, Japan |
10:45 AM |
1I-2 Preliminary Investigation of Focused Ultrasound in the Treatment of Leptomeningeal Metastases |
2I-2 Single Track Location Shear Wave Elasticity Imaging of the Liver: In Vivo Performance with Reduced Propagation Windows |
3I-2 Plane wave perfusion ultrasound imaging without contrast |
2F-2 Differential intensity projection (DIP) for visualisation and quantification of plaque neovascularisation in CEUS images of carotid arteries |
5I-2 Measurements of Backward Wave Propagation Using the Dynamic Photoelastic Technique |
6I-2 Steady-State and Transient Thermal Modeling For a SAW Duplexer |
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Meaghan O’Reilly1,2, Kullervo Hynynen1,2, My-Linh Yee1, Gregory Czarnota1,2, Kathleen Pritchard3,4, Robert Kerbel1,2, Arjun Sahgal1,5 |
Peter Hollender1, Mark Palmeri1,2, Gregg Trahey1,3 |
Jaime Tierney1, Brett Byram1 |
Wing Keung Cheung1, Benoy Shah2, Antonio Stanziola3, Dorothy Gujral4, Navtej Chahal2, David Cosgrove5, Roxy Senior2, Meng-Xing Tang6 |
Zhongtao Hu1, Hanyin Cui1, Zhiwu An1, Jie Mao1 |
Kevin Gamble1, William Buettner2 |
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1Sunnybrook Research Institute, Canada, 2Medical Biophysics, University of Toronto, Canada, 3Odette Cancer Centre, Sunnybrook Health Sciences Centre, Canada, 4Medicine, University of Toronto, Canada, 5Radiation Oncology, University of Toronto, Canada |
1Biomedical Engineering, Duke University, Durham, North Carolina, USA, 2Anesthesiology, Duke University Medical Center, Durham, North Carolina, USA, 3Radiology, Duke University Medical Center, Durham, North Carolina, USA |
1Biomedical Engineering, Vanderbilt University, Nashville, Tennessee, USA |
1Imperial College London, London, United Kingdom, 2Royal Brompton Hospital, United Kingdom, 3Imperial College London, United Kingdom, 4The Royal Marsden Hospital, United Kingdom, 5Hammersmith Hospital, United Kingdom, 6Bioengineering, Imperial College London, London, United Kingdom |
1State Key Laboratory of Acoustics, Institute of Acoustics Chinese Academy of Sciences, beijing, beijing, China, People’s Republic of |
1Mobile Devices Design Engineering, Qorvo Inc, Apopka, FLORIDA, USA, 2Package Engineering, Qorvo Inc, Hillsboro, Oregon, USA |
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11:00 AM |
1I-3 Clinical experience of intra-operative high intensity focused ultrasound in patients with colorectal liver metastases. Results of a Phase II study. |
2I-3 Influence of the transducer frequency in Shear Wave Elastography of the liver |
3I-3 Model-based estimation of intra-cardiac blood flow velocities using an unscented Kalman filter |
2F-3 Contrast-Enhanced Non-Linear 3D Ultrasound Imaging of Breast Lesions in a Clinical Population |
5I-3 A Neural Network Approach for MIMO Ultrasonic Tomography |
6I-3 Modeling of Lateral SAW Propagation Including Coupling Between Different SAW Modes |
7I-2 Real-Time Imaging, Targeting, and Ablation of Ex-Vivo Tissue Using a Handheld Histotripsy Transducer and Coregistered 64-Element High-Frequency Endoscopic Phased Array |
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David Melodelima1,2, Aurelien Dupre2,3, Yao Chen2, Jeremy Vincenot3, David Perol2, Michel Rivoire2 |
Linda Chami1,2, Olivier Lucidarme1,2, Muriel Lefort1, Jin Long Yue3, Claire Pellot-Barakat3 |
Jakob Høgenes1, Morten Wigen2, Patrick Segers3, Abigail Swillens3, Lasse Lovstakken2 |
Anush Sridharan1,2, John Eisenbrey1, Maria Stanczak1, Annemarie Daecher1, Priscilla Machado1, Annina Wilkes1, Alexander Sevrukov1, Haydee Ojeda-Fournier3, Robert Mattrey3, Kirk Wallace4, Flemming Forsberg1 |
Wenbo Zhao1,2, Zhun Chen1,2, Yuanwei Jin3, Ming Li1,4, Jimmy Zhu2 |
Benfeng Zhang1,2, Tao Han1, Gongbin Tang1,2, Qiaozhen Zhang1,2, Tatsuya Omori2, Ken-ya Hashimoto2 |
Jeffrey Woodacre1, Thomas Landry1, Jeremy Brown1 |
1LabTAU -U1032, INSERM, Lyon, France, 2Centre Leon Berard, France, 3LabTAU – U1032, INSERM, France |
1Laboratoire d’Imagerie Biomédicale, Sorbonne Universités, UPMC, CNRS, INSERM, Paris, France, 2Radiology, Hôpital Pitié-Salpétrière, France, 3SHFJ, IMIV, Orsay, France |
1SINTEF ICT, Oslo, Norway, 2Norwegian University of Science and Technology, Trondheim, Norway, 3Biommeda, Ghent University, Belgium |
1Radiology, Thomas Jefferson University, Philadelphia, PA, USA, 2Electrical and Computer Engineering, Drexel University, Philadelphia, PA, USA, 3Radiology, University of California San Diego, San Diego, CA, USA, 4GE Global Research, Niskayuna, NY, USA |
1SYSU-CMU Joint Institute of Engineering, China, People’s Republic of, 2Carnegie Mellon University, USA, 3University of Maryland Eastern Shore, USA, 4SYSU-CMU Shunde International Joint Research Institute, China, People’s Republic of |
1Shanghai Jiao Tong University, China, People’s Republic of, 2Chiba University, Japan |
1Biomedical Engineering, Dalhousie University, Halifax, Nova Scotia, Canada |
11:15 AM |
1I-4 Focused ultrasound therapy of cervical lymph nodes for alleviating multiple sclerosis |
2I-4 Measurements of Shear Wave Velocity and Attenuation in post-transplant livers with acute cellular rejection: a longitudinal study |
3I-4 Data Adaptive 2-D Tracking Doppler |
2F-4 Acoustic Sub-Aperture Processing (ASAP) for vascular imaging using high frame-rate ultrasound and microbubbles |
5I-4 Effect of Layer Dimension on the Propagation of Lamb Waves in the Presence of Liquid Layers |
6I-4 Impact of Thermo-Mechanical Stress on the TCF of WLP BAW Filter Devices |
7I-3 Coupling of wideband impulses generated by granular chains into liquids for biomedical applications |
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Anthony Podkowa1, Rita Miller1, Robert Motl2, Michael L. Oelze1 |
Ivan Nenadic1, Sara Aristizabal1, Matthew Urban1, William Sanchez1, James Greenleaf1, Shigao Chen1 |
YÜCEL KARABIYIK1, Jørgen Avdal1, Ingvild Kinn Ekroll1, Hans Torp1, Lasse Løvstakken1 |
Antonio Stanziola1, Chee Hau Low1, Eleni Bazigou1, Peter D. Weinberg1, Meng-Xing Tang1 |
Detlef Pape1, Miklos Lenner1 |
Wolfgang Heeren1, Michael Fattinger1, Gernot Fattinger1, Alexandre Volatier1, Mercedes Hernandez2, Robert Aigner1 |
Sevan Harput1, James McLaughlan1, Pierre Gelat2, Nader Saffari2, Jia Yang3, Omololu Akanji3, Peter J. Thomas3, David A. Hutchins3, Steven Freear1 |
1Bioacoustics Research Laboratory, Department of Electrical and Computer Engineering, The University of Illinois at Urbana-Champaign, USA, 2Department of Kinesiology and Community Health, The University of Illinois at Urbana-Champaign, USA |
1Mayo Clinic College of Medicine, Rochester, MN, USA |
1Department of Circulation and Medical Imaging, Norwegian University of Science and Technology, Trondheim, Norway |
1Bioengineering, Imperial College London, London, United Kingdom |
1ABB Switzerland Ltd., Baden-Daettwil, Switzerland |
1R&D, Qorvo, Apopka, Florida, USA, 2Package Engineering, Qorvo, Hillsboro, Oregon, USA |
1School of Electronic and Electrical Engineering, University of Leeds, Leeds, United Kingdom, 2Department of Mechanical Engineering, University College London, London, United Kingdom, 3School of Engineering, University of Warwick, Coventry, United Kingdom |
11:30 AM |
1I-5 Antivascular photo-mediated ultrasound therapy |
2I-5 A frequency shift method for shear wave attenuation measurement in soft tissues |
3I-5 Quantitative measurements using ultrasound vector flow imaging |
2F-5 Super Resolution Contrast Ultrasound Imaging: Analysis of Imaging Resolution and Application to Imaging Tumor Angiogenesis |
5I-5 Ultrasonic Complex Vibration Welding of Many Metal Foils and Terminals of Li-ion Battery and Capacitor |
6I-5 Hierarchical cascading in 2D FEM simulation of finite SAW devices with periodic block structure |
7I-4 A 2D dual-curvature focused ultrasound phased-array transducer for transcranial deep brain stimulation in monkey studies |
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Xinmai Yang1, Zizhong Hu2, Haonan Zhang2, Aghapi Mordovanakis2, Yannis Paulus2, Xueding Wang2 |
Simon Bernard1, Siavash Kazemirad1, Guy Cloutier1,2 |
Jørgen Arendt Jensen1 |
Fanglue Lin1, Juan D. Rojas1, Paul A. Dayton1 |
Jiromaru Tsujino1,2, Eiichi Sugimoto3 |
Julius Koskela1, Victor Plessky1, Panagiotis Maniadis2, Balam Willemsen2, Patrick Turner2, Bob Hammond2, Neal Fenzi2 |
Ming Qian1, Yongchuan Li1, Jiqin Huang1, Min Su1, Lili Niu1, Hairong Zheng1 |
1University of Kansas, USA, 2University of Michigan, USA |
1Laboratory of Biorheology and Medical Ultrasonics, University of Montréal Hospital Research Center (CRCHUM), Montréal, QC, Canada, 2Department of Radiology, Radio-Oncology and Nuclear Medicine and Institute of Biomedical Engineering, University of Montréal, Montréal, QC, Canada |
1Dept. of Elec. Eng., Technical University of Denmark, Lyngby, Denmark |
1Joint Department of Biomedical Engineering, University of North Carolina at Chapel Hill and North Carolina State University, Chapel Hill, North Carolina, USA |
1Graduate School of Enginering, Kanagawa University, Yokohama, Japan, 2R & D Center, Asahi EMS Co. Ltd, Yokohama, Japan, 3Head office, Asahi EMS Co. Ltd, Tokyo, Japan |
1GVR Trade SA, Switzerland, 2Resonant Inc., USA |
1Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences, Shenzhen, China, People’s Republic of |
11:45 AM |
1I-6 Low-intensity continuous ultrasound triggers effective bisphosphonate anticancer activity in breast cancer |
2I-6 Liver stiffness by shear wave elastography, new noninvasive and quantitative tool for acute variation estimation of central venous pressure in real-time? |
3I-6 Pulsatile Flow Dynamics in Stenotic Aortic Models using Ultrasonic and Optical Particle Imaging Velocimetry |
2F-6 Cardiac imaging with high frame rate contrast enhanced ultrasound: in-vivo demonstration |
5I-6 Specimen-Agnostic Guided Wave Inspection Using Recursive Feedback |
6I-6 A Fully-Coupled Model Simulating Electromagnetic Radiation from Vibrating Ferroelectrics |
7I-5 Laser-Generated-Focused Ultrasound Transducers for Microbubble-Mediated, Dual-Excitation Sonothrombolysis |
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Sophie Tardoski1, Jacqueline Ngo1, Evelyne Gineyts2, Philippe Clezardin2, David Melodelima1 |
Olivier Villemain1, Fidelio Sitefane2, Mathieu Pernot1, Guiti Malekzadeh-Milani2, Jerome Baranger1, Damien Bonnet2, Younes Boudjemline2 |
Javier Brum1, Miguel Bernal2, Nicasio Barrere3, Andreina Tesis1,3, Carlos Negreira1, Cecilia Cabeza3 |
Matthieu Toulemonde1, Yuanwei Li1, Shengtao Lin1, Mairead Butler2, Robert Eckersley3, W Colin Duncan4, Vassilis Sboros2, Meng-Xing Tang1 |
Chris Adams1, Sevan Harput1, David Cowell1, David Charutz2, Steven Freear1 |
Zhengliu Zhou1, Scott Keller1, Greg Carman1 |
Jinwook Kim1, Brooks D. Lindsey2, Wei-Yi Chang1, Xuming Dai3, Joseph M. Stavas4, Paul A. Dayton2, Xiaoning Jiang1 |
1LabTAU – U1032, INSERM, France, 2INSERM, France |
1Institut Langevin, Paris, France, 2Necker-Enfants Malades, Paris, France |
1Laboratorio de Acústica Ultrasonora, Instituto de Física, Facultad de Ciencias, Universidad de la República, Montevideo, Uruguay, 2Cardiovascular Dynamics Research Group, Universidad Pontificia Bolivariana, Medellin, Colombia, 3Física No Lineal, Instituto de Física, Facultad de Ciencias, Universidad de la República, Montevideo, Uruguay |
1Bioengineering, Imperial College London, United Kingdom, 2Institute of Biological Chemistry, Biophysics & Bioengineering Heriot-Watt University, United Kingdom, 3Biomedical Engineering Department, King’s College London, United Kingdom, 4Centre for Reproductive Health, University of Edinburgh, United Kingdom |
1University of Leeds, United Kingdom, 2SOREQ NRC, Israel |
1Mechanical and Aerospace Engineering Department, UCLA, Los Angeles, California, USA |
1Mechanical and Aerospace Engineering, North Carolina State University, Raleigh, North Carolina, USA, 2Joint Department of Biomedical Engineering, University of North Carolina at Chapel Hill and North Carolina State University, Chapel Hill, North Carolina, USA, 3Division of Cardiology, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina, USA, 4Division of Vascular and Interventional Radiology, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina, USA |
01:30 pm -03:00 pm |
Oral — Wednesday, September 21, 2016 |
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Session 1J. |
Session 2J. |
Session 3J. |
Session 4J. |
Session 5J. |
Session 6J. |
Session 7J. |
MTH: Therapy systems, devices, and treatment control |
MEL: Elasticity imaging of the kidney and breast |
MSD: Medical systems and devices II |
MCA: Microbubble signal processing and dynamics |
Ultrasonic Systems and Industrial Applications |
Microacoustic Wireless Sensors and Bio-Sensing |
CMUT Design |
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Chair: Nobuki Kudo |
Chair: Timothy Hall |
Chair: Kendall Waters |
Chair: Hairong Zheng |
Chair: Jafar Saniie |
Chair: Jan Kuypers |
Chair: Levent Degertekin |
Hokkaido University |
University of Wisconsin |
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Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences |
Illinois Institute of Technology |
Qorvo |
Georgia Tech |
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Auditorium de Ronsard |
Auditorium Descartes |
Room Chambord |
Room Cheverny |
Room Villandry |
Room Amboise |
Room Langeais |
1:30 PM |
1J-1 A fully electronically steered phased array with 4096 elements for thermal ablation |
2J-1 Application of Acoustoelasticity to Evaluate Non-linear Modulus in ex vivo Kidneys |
3J-1 Multi-line measurements of blood Velocity Vectors in Real-Time |
4J-1 Improving contrast-enhanced power Doppler using signal coherence |
5J-1 Concepts and Architecture for a Thumb Size Ultrasonic IoT Measurement System |
6J-1 LGS 2.45 GHz ISM Band SAW Resonator for Harsh Environment Wireless Applications |
7J-1 Acoustic simulation of large CMUT arrays using a fast multipole algorithm |
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Kullervo Hynynen1,2, Benjamin Lucht3, Ping Wu3, Rohan Ramdoyal3, Samuel Gunaseelan3, Tyler Portelli3 |
Sara Aristizabal1, Carolina Amador1, James F. Greenleaf1, Matthew W. Urban1,2 |
Stefano Ricci1, Luca Bassi1, Valentino Meacci1, Alessandro Ramalli1, Piero Tortoli1 |
Charles Tremblay-Darveau1, Avinoam Bar-Zion2, Ross Williams1, Paul S. Sheeran1, Laurent Milot3, Thanasis Loupas4, Dan Adam2, Matthew Bruce5, Peter N. Burns1,6 |
Jerker Delsing1, Jan van Deventer1, Jens Eliasson1, Jonny Johansson1, Torbjörn Löfqvist1, Fredrik Sandin1 |
Mauricio Pereira da Cunha1,2, Anin Maskay1,2, Robert Lad2,3, Gregory Harkay4 |
Bernard Shieh1, Karim Sabra1, F. Levent Degertekin1 |
1Medical Biophysics, University of Toronto, ON, Canada, 2Physical Sciences Platform, Sunnybrook Research Institute, Toronto, ON, Canada, 3Physical Sciences Plaform, Sunnybrook Research Institute, ON, Canada |
1Department of Physiology and Biomedical Engineering, Mayo Clinic College of Medicine, Rochester, Minnesota, USA, 2Department of Radiology, Mayo Clinic College of Medicine, Rochester, Minnesota, USA |
1Information Engineering Dept., University of Florence, Firenze, Italy |
1Sunnybrook Research Institute, Sunnybrook Health Sciences Centre, Toronto, Canada, 2Biomedical Engineering, Technion-Israel Institute of Technology, Haifa, Israel, 3Medical Imaging, University of Toronto, Toronto, Canada, 4Supersonic Imagine, Aix-en-Provence, France, 5Center for Industrial and Medical Ultrasound, University of Washington, Seattle, USA, 6Medical Biophysics, University of Toronto, Toronto, Canada |
1EISLAB, Lulea University of Technology, Sweden |
1Dept. of Electrical and Computer Engineering, University of Maine, Orono, Maine, USA, 2Laboratory of Surface Science and Technology, University of Maine, Orono, Maine, USA, 3Dept. of Physics and Astronomy, University of Maine, Orono, Maine, USA, 4Environetix Technologies Corporation, Orono, USA |
1Mechanical Engineering, Georgia Institute of Technology, Atlanta, GA, USA |
1:45 PM |
1J-2 Real-time Transcranial Temperature Control In Vivo Using Dual-mode Ultrasound Array System |
2J-2 Blood Pressure Dependent Elasticity Measurements of ex-vivo Porcine Kindey |
3J-2 3D airborne ultrasound vibrometer for the detection of skin surface heterogeneities |
4J-2 Similarities of Harmonic Doppler Signals from Kidney Stones and Ultrasound Contrast Agents |
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6J-2 Rayleigh SAW assisted SH-SAW immunosensor on X-cut 148-Y LiTaO<sub>3</sub> |
7J-2 Capacitive Substrate Coupling of Row–Column-Addressed 2-D CMUT Arrays |
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Dalong Liu1, Joshua Hamborg2, Raj Aravalli1, Parker O’Brien1, Hasan Aldiabat1, Juan Du1, Walter Low2, Emad Ebbini1 |
Caitlin Schneider1, Mohammad Honarvar1, Julio Jobo1, Samir Bidnur2, Robert Rohling1,3, Tim Salcudean1, Christopher Nguan2 |
Nathan Jeger1, Mathias Fink1, Ros Kiri Ing1 |
Matthew Bruce1, Bryan Cunitz1, Charles Tremblay-Darveau2, Barbrina Dunemire1, Julianna Simon1, Oleg Sapozhnikov1, Peter Burns2, Michael Bailey1 |
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Takashi Kogai1,2, Hiromi Yatsuda1, Jun Kondoh2 |
Mathias Engholm1, Hamed Bouzari2, Jørgen Arendt Jensen2, Erik Vilain Thomsen1 |
1Electrical and Computer Engineering, Universit of Minnesota, Minneapolis, Minnesota, USA, 2Neurosurgery, Universit of Minnesota, Minneapolis, Minnesota, USA |
1Electrical and Computer Engineering, University of British Columbia, Vancouver, BC, Canada, 2UBC Urology, Canada, 3Mechanical Engineering, University of British Columbia, Canada |
1Institut Langevin, ESPCI ParisTech, PSL Research University, CNRS UMR 7587, UPMC, Paris, France |
1University of Washington, Seattle, Washington, USA, 2University of Toronto, Canada |
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1Japan Radio Co., Ltd., Japan, 2Shizuoka University, Japan |
1Department of Micro and Nanotechnology, Technical University of Denmark, Denmark, 2Department of Electrical Engineering, Technical University of Denmark, Denmark |
2:00 PM |
1J-3 Development of an implantable ultrasonic device for enhancing the delivery of chemotherapy to the brain |
2J-3 Evaluation of Renal Transplant Status using Viscoelastic Response (VisR) Ultrasound: A Pilot Clinical Study |
3J-3 Development of a Portable Ultrasound Device for Diagnosing Alzheimer’s Disease by Measuring Pulse Wave Velocity of Carotid Artery |
4J-3 A regularized version of a Logan-based approach to improve reproducibility of perfusion parameters in CEUS |
5J-2 A GPU-based Ultrasound Phased-Array Research System for Non-destructive Testing |
6J-3 High-temperature SAW electrodes based on Ir-Rh thin films |
7J-3 Representation of CMUT-based isolation transformer by means of an electrical two-port network |
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Cyril Lafon1,2, Michael Canney3, Kevin Beccaria4, Catherine Horodyckid4, Alexandre Vignot3, Jean-Yves Chapelon1,2, Ahmed Idbaih4, Alexandre Carpentier4 |
Md Murad Hossain1, Mallory Selzo2, Robert Hinson3, Leslie Baggessen4, Randal Detwiler3, Wui Chong5, Lauren Brubaker5, Melissa Caughey,3, Melrose Fisher3, sonya whitehead5, Caterina Gallippi1 |
Yi-Hsiang Chuang1, Ming-Chyi Pai2, C.L. Tsai3, Chih-Chung Huang1 |
Maxime Doury1, Alexandre Dizeux1, Alain De Cesare1, Olivier Lucidarme1, Lori Bridal1, Frédérique Frouin2 |
Marcin Lewandowski1, Mateusz Walczak1, Beata Witek1 |
Amine TAGUETT1, Thierry AUBERT1,2, Marc Lomello1, Omar Elmazria3, Jaafar Ghanbaja3, Abdelkrim Talbi4 |
Jacques Heller1, Audren Boulmé1, Daniel Alquier1, Sophie Ngo1, Camille Compère1, Dominique Certon1 |
1LabTAU, INSERM, Lyon, France, 2Université de Lyon, Lyon, France, 3Carthera SAS, Lyon, France, 4Pitie Salpetriere Hospital, Paris, France |
1Department of Biomedical Engineering, University of North Carolina, Chapel Hill, Chapel hill, North Carolina, USA, 2Ultrasound Division, Siemens Medical Solutions, Seattle, Washington, USA, 3Department of Medicine, University of North Carolina, Chapel Hill, Chapel hill, North Carolina, USA, 4Hunter Holmes McGuire VA Medical Center, Richmond, VA, USA, 5Department of Radiology, University of North Carolina, Chapel Hill, Chapel hill, North Carolina, USA |
1Department of Biomedical Engineering, National Cheng Kung University, Taiwan, 2Institute of Gerontology, National Cheng Kung University, Taiwan, 3Institute of Physical Education, Health &Leisure Studies, National Cheng Kung University, Taiwan |
1Sorbonne Universités, UPMC Univ Paris 06, Inserm, CNRS, AP-HP, LIB, Paris, France, 2Université Paris Saclay, CEA, Inserm, CNRS, Univ Paris-Sud, IMIV, Orsay, France |
1Institute of Fundamental Technological Research, Warsaw, Poland |
1Laboratoire SYMME, Université de Savoie, Annecy-le-Vieux, France, 2Laboratoire LMOPS, CentraleSupélec – Université de Lorraine, Metz, France, 3Institut Jean Lamour (IJL), UMR 7198 CNRS-Université de Lorraine, Vandoeuvre-lès-Nancy, France, 4LIA LEMAC/LICS – IEMN, EC Lille-CNRS, Lille, France |
1GREMAN, UMR-CNRS 7347, Université François-Rabelais de Tours, Tours, France |
2:15 PM |
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2J-4 Evaluation of the Nonlinear Modulus in Renal Transplant Patients using Acoustoelasticity |
3J-4 Portable Low Cost Ultrasound Imaging system |
4J-4 Subharmonic Extraction by Hammerstein Models for Microbubble Signals |
5J-3 Fast advanced imaging for the inspection with wedges using total focusing method |
6J-4 Packageless WLAW devices based on Al<sub>2</sub>O<sub>3</sub>/Pt/GaN/Sapphire structure for high-temperature applications<sub></sub> |
7J-4 A general multi-mode lumped equivalent circuit model for a circular cMUT cell |
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Sara Aristizabal1, Carolina Amador1, Matthew W. Urban1,2 |
M. R. Sobhani1, H. E. Ozum2, G. G. Yaralioglu1, A. Bozkurt3, A. S. Ergun2 |
Sebastien Menigot1, Emma Kanbar1, Ayache Bouakaz1, Jean-Marc Girault1 |
Ewen Carcreff1, Rémi Lallement2, Gavin Dao2, Dominique Braconnier1 |
Florian Bartoli1,2, Sergei Zhgoon3, Thierry Aubert1,4, Abdelkrim Talbi5, Philippe Pigeat2, Omar Elmazria2 |
Shengping Mao1,2, Xavier Rottenberg1, Liwang Liu3, Véronique Rochus1, Guilherme Brondani Torri1, Rachid Haouari1,4, Bart Nauwelaers2, Harrie A.C. Tilmans1 |
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1Department of Physiology and Biomedical Engineering, Mayo Clinic College of Medicine, Rochester, Minnesota, USA, 2Department of Radiology, Mayo Clinic College of Medicine, Rochester, Minnesota, USA |
1Ozyegin University, Istanbul, Turkey, 2TOBB University, Ankara, Turkey, 3Sabanci University, Istanbul, Turkey |
1Université François-Rabelais de Tours, Inserm, Imagerie et Cerveau UMR U930, Tours, France |
1The Phased Array Company, West Chester, Ohio, USA, 2Advanced OEM Solutions, West Chester, Ohio, USA |
1Laboratoire LMOPS, CentraleSupélec – Université de Lorraine, Metz, France, 2IJL UMR 7198 Université de Lorraine – CNRS, France, 3National Research University Moscow Power Engineering Institute, Russian Federation, 4SYMME – Université Savoie Mont Blanc, France, 5IEMN UMR-8520 Ecole Centrale de Lille, France |
1imec, Leuven, Belgium, 2ESAT, KU Leuven, Belgium, 3Departement d’Acoustique Physique, Université de Bordeaux, France, 4Department of Physics and Astronomy, KU Leuven, Belgium |
2:30 PM |
1J-4 Sub second simultaneous displacement and temperature MR imaging during HIFU ablation |
2J-5 In vivo imaging of tissue viscoelastic retardation time for differentiation of breast masses |
3J-5 Controlling a shear wave field in soft tissue using a multichannel vibrator array |
4J-5 Simultaneous Trapping and Imaging of Microbubbles at Clinically Relevant Flow Rates |
5J-4 Large-scale Trials of a Real-time Acoustic Backscatter System for Solids Concentration Measurement During Nuclear Waste Cleanup |
6J-5 Recent research results on wireless passive acoustic sensors for smart grids application |
7J-5 Performance Analysis and Design of FET-Embedded Capacitive Micromachined Ultrasonic Transducers (CMUTs) |
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Pierre Bour1,2, Fabrice Marquet1, Valéry Ozenne1, Solenn Toupin1,3, Matthieu Lepetit Coiffe3, Erik Dumont2, Bruno Quesson1 |
Mahdi Bayat1, Alireza Nabavizadeh1,2, Viksit Kumar1, Max Denis3, Adriana Gregory1, Michael Insana4, Azra Alizad1,3, Mostafa Fatemi1 |
Chadi ZEMZEMI1, Ali ZORGANI1, Stefan CATHELINE1 |
Sevan Harput1, Luzhen Nie1, David M. J. Cowell1, James McLaughlan1,2, Steven Freear1 |
David Cowell1, Tim Hunter2, Hugh Rice2, Alastair Tonge2, Thomas Carpenter1, Jeff Peakall3, Michael Fairweather2, Martyn Barnes4, Steven Freear1 |
Tao Han1 |
Seung Geun Jung1,2, Jinsik Kim1, Kyo Seon Hwang1, Hyun-Yong Yu2, Byung Chul Lee1 |
1IHU-liryc, France, 2IGT, France, 3Siemens Healthcare, France |
1Physiology and Biomedical Engineering, Mayo Clinic, Rochester, MN, USA, 2Biomedical Informatics and Computational Biology, University of Minnesota, Rochester, USA, 3Radiology, Mayo Clinic, Rochester, MN, USA, 4Bioengineering, University of Illinois at Urbana-Champaign, Urbana, IL, USA |
1INSERM, Université de Lyon, Lyon, France |
1School of Electronic and Electrical Engineering, University of Leeds, Leeds, United Kingdom, 2Division of Biomedical Imaging, University of Leeds, Leeds, United Kingdom |
1School of Electronic and Electrical Engineering, University of Leeds, Leeds, United Kingdom, 2School of Chemical and Process Engineering, University of Leeds, Leeds, United Kingdom, 3School of Earth and Environment, University of Leeds, Leeds, United Kingdom, 4Sellafield Limited, United Kingdom |
1Department of Instrment Science and Engineering, Shanghai Jiao Tong University, Shanghai, China, People’s Republic of |
1Center for BioMicrosystems, Korea Institute of Science and Technology (KIST), Seoul, Korea, Republic of, 2Electrical Engineering, Korea University, Korea, Republic of |
2:45 PM |
1J-5 Noise Elimination of Therapeutic Ultrasound in Phase Modulated High Intensity Focused Ultrasound Exposure to Enhance the Heating Effect |
2J-6 3-D Shear strain reconstruction for improved breast lesion detection |
3J-6 Bio-acoustic levitational assembly of heterocellular multilayer constructs for tissue engineering |
4J-6 Translational Dynamics of Bubbles Exposed to Ultrasound – Transporting Bubbles to a Boundary Under Flow Conditions |
5J-5 Statistical ultrasonic characterization of particulate filler distribution in polymer compounds |
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7J-6 Dynamic Characteristics of Circular CMUTs with Air-Filled Cavities |
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Ryo Takagi1, Ryosuke Iwasaki2, Shin Yoshizawa1, Shin-ichiro Umemura2 |
Gijs A.G.M. Hendriks1, Hendrik H.G. Hansen1, Chris L. de Korte1 |
Charlene bouyer1,2, Pu Chen3, Thomas J.F. Nieland3, Utkan Demirci3, Frederic Padilla1,2 |
Christopher Acconcia1,2, Ben Leung1, David Goertz1,2 |
Sebastian Wöckel1, Hendrik Arndt2, Ulrike Steinmann2, Kilian Dietl3, Giovanni Schober3, Christoph Kugler3, Thomas Hochrein3 |
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Ayrat Galisultanov1, Patrice Le Moal1, Vincent Walter1, Gilles Bourbon1 |
1Communications Engineering, Tohoku University, Sendai, Miyagi, Japan, 2Biomedical Engineering, Tohoku University, Sendai, Miyagi, Japan |
1Medical UltraSound Imaging Center (MUSIC), Radboud university medical center, Nijmegen, Netherlands |
1Inserm, U1032 LabTau, Lyon, France, lyon, France, 2Université de Lyon, Lyon, France, France, 3Bio-Acoustic MEMS in Medicine (BAMM) Lab, School of Medicine, Stanford University, CA, USA, USA |
1Physical Sciences, Sunnybrook Research Institute, Toronto, Ontario, Canada, 2Medical Biophysics, University of Toronto, Toronto, Ontario, Canada |
1ifak e.V., Magdeburg, Saxony-Anhalt, Germany, 2ifak e.V., Germany, 3SKZ, Germany |
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1Department of Applied Mechanics, FEMTO-ST, Besancon, France |
04:00 pm -05:30 pm |
Oral — Wednesday, September 21, 2016 |
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Session 1K. |
Session 2K. |
Session 3K. |
Session 4K. |
Session 5K. |
Session 6K. |
Session 7K. |
MBF: Flow imaging: From 2D to 4D |
MEL: Methods in elasticity imaging |
MBB: Novel imaging methods |
MTC: Bone |
Energy harvesting and Flow Measurement |
PA Opto-Acoustics |
Medical Imaging II |
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Chair: Kai E. Thomenius |
Chair: Emad Ebbini |
Chair: Svetoslav Nikolov |
Chair: James G. Miller |
Chair: Nishal Ramadas |
Chair: yook-kong yong |
Chair: Scott Smith |
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Elster Metering Limited (now Honeywell) |
Rutgers University |
GE Research |
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Auditorium de Ronsard |
Auditorium Descartes |
Room Chambord |
Room Cheverny |
Room Villandry |
Room Amboise |
Room Langeais |
4:00 PM |
1K-1 Reconstruction of In Vivo Flow Velocity Fields Based On a Rapid Ultrasound Image Segmentation and B-spline Regularization Framework |
2K-1 On-Axis Acoustic Radiation-Force-based Stiffness Estimate in Phantoms |
3K-1 Snell’s beamformer |
4K-1 Bone cortical thickness and porosity assessment using guided waves-based axial transmission technique |
5K-1 Optimal Electric Load Prediction from the KLM Model for Ultrasound Energy Receivers |
6K-1 Rapid and simultaneous measurement of longitudinal and shear wave velocities by Brillouin scattering from artificially induced phonons |
7K-1 A 360&[deg] Fully Functional Endoscopic Ultrasound Radial Array |
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Thomas Grønli1, Erik Smistad1, Siri Ann Nyrnes1,2, Alberto Gomez3, Lasse Lovstakken1 |
Kristy Walsh1, Mark Palmeri2, Brett Byram1 |
Alfonso Rodriguez-Molares1, Ali Fatemi2, Lasse Lovstakken2, Hans Torp2 |
Quentin Vallet1, Jean-Gabriel Minonzio1, Nicolas Bochud1, Yohann Bala2, Rémy Gauthier3, Hélène Follet2, David Mitton3, Pascal Laugier1 |
Mikel Gorostiaga1, Matthias C. Wapler1, Ulrike Wallrabe1 |
Masahiko Kawabe1, Takahiko Yanagitani2, Shinji Takayanagi3, Yoshiaki Shibagaki1, Masashi Suzuki2, Mami Matsukawa1 |
Youwei Chen1, Xiaowen Ma1, Haitao Huang1, Xiang Li1, Jianren Yuan1 |
1Dept. Circulation and Medical Imaging, Norwegian University of Science and Technology, Trondheim, Norway, 2St. Olavs University Hospital, Trondheim, Norway, 3Dept. Biomedical Engineering, King’s College, London, United Kingdom |
1Biomedical Engineering, Vanderbilt University, Nashville, Tennessee, USA, 2Biomedical Engineering, Duke University, Durham, North Carolina, USA |
1Department of Circulation and Medica Imaging, Norwegian University of Science and Technology, Trondheim, Norway, 2Norwegian University of Science and Technology, Norway |
1Sorbonne Universités, UPMC Univ Paris 06, CNRS UMR 7371, INSERM UMR S1146, Laboratoire d’Imagerie Biomédicale, Paris, France, 2Univ Lyon, Université Claude Bernard Lyon 1, INSERM UMR 1033, Lyon, France, 3Univ Lyon, Université Claude Bernard Lyon 1, IFSTTAR, UMR_T9406, LBMC, Lyon, France |
1Laboratory for Microactuators, IMTEK – University of Freiburg, Freiburg im Breisgau, Baden-Württemberg, Germany |
1Doshisha University, Kyoto, Japan, 2Waseda University, Tokyo, Japan, 3Nagoya Institute of Technology, Aichi, Japan |
1Acoustic Life Science Co. Ltd., Shanghai, China, People’s Republic of |
4:15 PM |
1K-2 Three-dimensional intra-cardiac flow estimation using multi‑planar echo particle image velocimetry: experimental validation against phase-contrast MRI |
2K-2 On the Quantitative Potential of Viscoelastic Response (VisR) Ultrasound using Matrix Array Transducers: in silico Demonstration |
3K-2 Improved resolution and crosstalk rejection in multi-line transmit ultrasound imaging using delay multiply and sum beamforming |
4K-2 Anisotropic behavior of induced electric potentials in bone by ultrasound irradiation |
5K-2 MEMS Piezoelectric Energy Harvester Design and Optimization Based on Genetic Algorithm |
6K-2 Single pulse illumination of multi-layer photoacoustic holograms for patterned US field generation |
7K-2 Withdrawn |
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Hang Gao1, Qiong He2, Aiqi Sun2, David Larsson3, Xinheng Feng4, Yunduo Li2, Matilda Larsson3, Rui Li2, Jianwen Luo2, Jan D’hooge1 |
Md Murad Hossain1, Christopher Moore2, Caterina Gallippi1,2 |
Giulia Matrone1, Alessandro Ramalli2, Alessandro Stuart Savoia3, Piero Tortoli2, Giovanni Magenes1 |
Sayaka Matsukawa1, Shunki Mori1, Isao Mano1, Takahiko Yanagitani2, Katsunori Mizuno3, Shinji Takayanagi4, Mami Matsukawa1 |
Seyedfakhreddin Nabavi1, Lihong Zhang1 |
Michael Brown1, Eleanor Martin1, Ben Cox1, Bradley Treeby1 |
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1Cardiovascular Imaging & Dynamics, KU Leuven, Belgium, 2Department of Biomedical Engineering, Tsinghua University, China, People’s Republic of, 3Medical Engineering, KTH Royal Institute of Technology, Sweden, 4Department of Cardiology, Peking University Third Hospital, China, People’s Republic of |
1Department of Biomedical Engineering, University of North Carolina, Chapel Hill, Chapel hill, North Carolina, USA, 2Department of Electrical and Computer Engineering, North Carolina State University, Chapel hill, North Carolina, USA |
1Department of Electrical, Computer and Biomedical Engineering, University of Pavia, Pavia, Italy, 2Department of Information Engineering, University of Florence, Firenze, Italy, 3Department of Engineering, University Roma Tre, Roma, Italy |
1Doshisha University, Japan, 2Waseda University, Japan, 3University of Tokyo, Japan, 4Nagoya Institute of Technology, Japan |
1Electrical and Computer Engineering, Memorial University of Newfoundland, St. John’s, NL, Canada |
1Department of Medical Physics and Biomedical Engineering, University College London, London, United Kingdom |
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4:30 PM |
1K-3 Experimental 3-D vector flow estimation using a 62+62 row-column prototype probe |
2K-3 Improved Multi-foci Beamforming for Combined High Frame Rate Acoustic Radiation Force Impulse Imaging and Thermal Strain Imaging |
3K-3 A method for intrapulse spatial compounding |
4K-3 Relationships among Quantitative Ultrasound Parameters and Linear and Nonlinear Mechanical Properties of Cancellous Bone |
5K-3 Full-wave numerical simulation of ultrasonic transit-time gas flowmeters |
6K-3 Complex-valued frequency response of hydrophones: primary calibration and uncertainty evaluation |
7K-3 The Role of Sub-Dicing on the Acoustical Design of an Ultrasound Matrix Transducer for Carotid Arteries Imaging |
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Simon Holbek1, Matthias Bo Stuart1, Jørgen Arendt Jensen1 |
Xuan Ding1,2, Isaac James3, Kacey Marra1,3, J. Peter Rubin1,3, Kang Kim1,4 |
Nick Bottenus1 |
Keith Wear1, Saghi Sadoughi2, Shan Zhu2, Shashank Nawathe2, Srinidhi Nagaraja1, Maureen Dreher1, Tony Keaveny2 |
Adrian LUCA1, Kamel FODIL1 |
Martin Weber1, Volker Wilkens1 |
Maysam Shabanimotlagh1, Jovana Janjic2, Shreyas Raghunathan1, Nico de Jong3, Martin Verweij3 |
1Center for Fast Ultrasound, Denmark |
1Bioengineering, University of Pittsburgh, Pittsburgh, PA, USA, 2Medical Scientist Training Program, University of Pittsburg, Pittsburgh, PA, USA, 3Plastic Surgery, University of Pittsburgh School of Medicine, Pittsburgh, PA, USA, 4Center for Ultrasound Molecular Imaging and Therapeutics, University of Pittsburgh School of Medicine, Pittsburgh, PA, USA |
1Duke University, Durham, North Carolina, USA |
1Center for Devices and Radiological Health, Food and Drug Administration, USA, 2University of California, Berkeley, USA |
1R&D, Ultraflux S.A., Éragny, France |
11.62 Ultrasonics, Physikalisch-Technische Bundesanstalt, Braunschweig, Germany |
1Technical University of Delft, Netherlands, 2Erasmus MC, Netherlands, 3Technical University of Delft, Erasmus MC, Netherlands |
4:45 PM |
1K-4 High Frame Rate Synthetic Aperture 3D Vector Flow Imaging |
2K-4 Implementation of Probe Oscillation Shear Wave Elastography (PROSE) on a Portable Laptop Ultrasound Scanner |
3K-4 A compressed beamforming framework for plane wave ultrasound imaging |
4K-4 Site-matched 200-MHz acoustic microscopy and nanoindentation reveals mineral cracking in aged cortical bone tissue. |
5K-4 Modular Ultrasound Velocimeter for Adaptive Flow Mapping in Liquid Metals |
6K-4 High-Performance Acousto-optical Dispersive Delay Line for Ultrashort UV Pulse Controlling |
7K-4 Comparison of different optimized irregular sparse 2D ultrasound arrays |
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Carlos Armando Villagómez Hoyos1, Simon Holbek1, Matthias Bo Stuart1, Jørgen Arendt Jensen1 |
Daniel Mellema1, Pengfei Song1, Armando Manduca2, Matthew Urban1, Randall Kinnick2, James Greenleaf2, Shigao Chen1 |
Adrien Besson1,2, Rafael E. Carrillo1,3, Dimitris Perdios1, Marcel Arditi1, Olivier Bernard4, Yves Wiaux2, Jean-Philippe Thiran1,3 |
Kay Raum1, Susanne Schrof1, Jinming Zhou2, Hanna Isaksson2 |
Richard Nauber1, Hannes Beyer1, Kevin Maeder1, Christian Kupsch1, Norman Thieme1, Lars Buettner1, Juergen Czarske1 |
Vladimir Molchanov1, Natalya Naumenko1, Konstantin Yushkov1 |
Bakary Diarra1, Emmanuel Roux2,3, Hervé Liebgott2, Samikannu Ravi1, Marc Robini2, Piero Tortoli3, Christian Cachard2 |
1Technical University of Denmark, Copenhagen, Denmark |
1Radiology, Mayo Clinic College of Medicine, Rochester, MN, USA, 2Physiology and Biomedical Engineering, Mayo Clinic College of Medicine, Rochester, MN, USA |
1Signal Processing Laboratory (LTS5), Ecole Polytechnique Fédérale de Lausanne, Lausanne, Switzerland, 2Institute of Sensors, Signals and Systems, Heriott-Watt University, Edinburgh, United Kingdom, 3Department of Radiology, University Hospital Center (CHUV) and University of Lausanne, Lausanne, Switzerland, 4CREATIS, CNRS UMR 5220, University of Lyon, INSA-Lyon, University of Lyon1, Villeurbanne, France |
1Charité-Universitätsmedizin Berlin, Germany, 2Lund University, Sweden |
1MST, TU-Dresden, Dresden, Saxony, Germany |
1Acousto-optical Research Center, National University of Science and Technology “MISIS”, Moscow, Russian Federation |
1Electrical, Electronics, Computer & Telecommunication Engineering Department, Botswana International University of Science & Technology, Palapye, Botswana, 2CREATIS, Université de Lyon ; CNRS UMR 5220 ; INSERM U1044 ; Université Lyon 1 ; INSA-Lyon, Villeurbanne, France, 3Electronics and Telecommunications Dept., Università degli Studi di Firenze, Florence, Italy |
5:00 PM |
1K-5 Multimodal validation of patient-specific intraventricular flow simulations from 4D echocardiography |
2K-5 Measurement of the stiffness and viscosity of viscoelastic materials using group shear wave speeds |
3K-5 Fast and sensitive passive cavitation mapping with the angular spectrum method |
4K-5 BMD reflects porosity but is insensitive to tissue stiffness: a calibration study on micro-CT and scanning acoustic microscopy images of cortical bone |
5K-5 Modelling of transit-time ultrasonic flow meters under multi-phase flow conditions |
6K-5 Differential optical interferometer for measuring transient SAW generated with ultra-wideband IDT |
7K-5 cMUT versus Bulk array transducer’s acoustic pattern comparison |
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David Larsson1, Jeannette H Spühler2, Sven Petersson3, Tim Nordenfur1, Johan Hoffman2, Massimiliano Colarieti-Tosti1, Reidar Winter4, Matilda Larsson1 |
Ned Rouze1, Yufeng Deng1, Mark Palmeri1, Kathryn Nightingale1 |
Costas Arvanitis1, Nathan McDannold1, Gregory Clement2 |
Gianluca Iori1, Vantte Kilappa1, Peter Varga2, Johannes Schneider1, Melanie Daugschies3, Reinhard Barkmann3, Kay Raum1 |
Matej Simurda1, Benny Lassen1, Lars Duggen1, Nils T. Basse2 |
ANURUPA SHAW1, Damien Teyssieux1, Vincent Laude1 |
Cyril Meynier1, Omri Warshavsky1, Johannes Rebling2,3, Daniel Razansky2,3, Nicolas Felix1, Martin Flesch1,4, Nicolas Senegond1, An Nguyen-Dinh1 |
1Medical Engineering, KTH Royal Institute of Technology, Huddinge, Sweden, 2Computational Technology Laboratory, KTH Royal Institute of Technology, Stockholm, Sweden, 3Diagnostic Medical Physics, Karolinska University Hospital, Huddinge, Sweden, 4Clinical Sciences, Karolinska Institutet, Stockholm, Sweden |
1Biomedical Engineering, Duke University, Durham, North Carolina, USA |
1Radiology, Harvard Medical School, Boston, USA, 2Biomedical Engineering, Cleveland Clinic, USA |
1Berlin-Brandenburg Center for Regenerative Therapies, Charité – Universitätsmedizin Berlin, Berlin, Germany, 2AO Research Institute Davos, Davos, Switzerland, 3Klinik für Diagnostische Radiologie, Universitätsklinikum Schleswig-Holstein Kiel, Kiel, Germany |
1Mads Clausen Institute, University of Southern Denmark, Sonderborg, Denmark, 2Siemens A/S Flow Instruments, Sonderborg, Denmark |
1Institut FEMTO-ST, UMR CNRS 6174, Université Bourgogne Franche-Comté, Besançon, France |
1Vermon S.A., Tours, France, 2Institute for Biological and Medical Imaging (IBMI), Helmholtz Zentrum München, Germany, Munchern, Germany, 3School of Medicine and School of Electrical Engineering and Information Technology, Technische, Munchen, Germany, 4Institut Langevin, Paris, France |
5:15 PM |
1K-6 In-vivo 4-D Ultrafast Vector Flow Imaging: quantitative assessment of arterial blood flow |
2K-6 On the Feasibility of Estimating Ultrasonic Shear Wave Attenuation using Amplitude-Based Methods |
3K-6 Computationally-efficient model-based clutter suppression with ADMIRE |
4K-6 On the anisotropic elasticity of femoral cortical bone assessed by resonant ultrasound spectroscopy |
5K-6 Finite element modelling study to explore the possibilities of ultrasonic gas flow measurement in wet-gas applications |
6K-6 Optical Tomography of Surface Waves for Tissue Characterization Application: Phantom study |
7K-6 Dual Frequency Transducer Design for Suppression of Multiple Scattering: Radiation Apertures |
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Mafalda Correia1, Jean Provost1, Mickael Tanter1, Mathieu Pernot1 |
Samantha Lipman1, Ned Rouze1, Mark Palmeri1, Kathryn Nightingale1 |
Kazuyuki Dei1, Brett Byram1 |
Xiran CAI1, Laura Peralta1, Pascal Laugier1, Quentin Grimal1 |
Sivaram Nishal Ramadas1, Andrew Tweedie2, Gerry Harvey3 |
Ali Zorgani1, Maxime Lescanne1, Aline Bel-Brunon2, Tarek Abdul Ghafour2, Stefan Catheline1 |
Johannes Kvam1,2, Ola F. Myhre1, Bjørn. A.J. Angelsen1 |
1Institut Langevin (ESPCI Paris, PSL Research University, CNRS UMR 7587, INSERM U979), Paris, France |
1Duke University, Durham, North Carolina, USA |
1Biomedical Engineering, Vanderbilt University, Nashville, Tennessee, USA |
1Sorbonne Université, UPMC Univ Paris 06, INSERM UMR-S 1146, CNRS UMR 7371, Laboratoire d’Imagerie Biomédicale, Paris, France |
1Honeywell, Stafford, United Kingdom, 2PZFlex, United Kingdom, 3PZFlex, USA |
1LabTAU, U1032 INSERM, Lyon, France, 2LaMCos, INSA-Lyon, villeurbanne, France |
1Department of circulation and medical imaging, Norwegian University of Science and Technology, Trondheim, Norway, 2Norsvin SA, Hamar, Norway |