Search Results - 3D ultrasonic data compression algorithm
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Hardware and software architectures for computationally efficient three-dimensional ultrasonic data compression
ISSN: 1751-858X, 1751-8598, 1751-8598Published: Stevenage The Institution of Engineering and Technology 01.01.2016Published in IET circuits, devices & systems (01.01.2016)“…) data compression algorithm on a reconfigurable ultrasonic system-on-chip (SoC) hardware platform. In this study, hardware and software architectures of the 3D ultrasonic compression algorithm are realised using Xilinx Zynq all programmable SoC…”
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Journal Article -
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Hardware-software co-design of 3D data compression for real-time ultrasonic imaging applications
ISSN: 1051-0117Published: IEEE 01.09.2014Published in Proceedings - IEEE Ultrasonics Symposium (01.09.2014)“… The objective of this study is to implement discrete wavelet transform (DWT) based ultrasonic 3D data compression algorithm on a reconfigurable ultrasonic system-on-chip hardware platform targeted for real-time ultrasonic imaging applications…”
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Conference Proceeding -
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3D compression algorithms and system-on-chip design for ultrasonic imaging applications
ISBN: 9781321939590, 1321939590Published: ProQuest Dissertations & Theses 01.01.2015“… In this study, two algorithms for ultrasonic signal compression are analyzed based on: sub-band elimination using discrete wavelet transform…”
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Dissertation -
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Machine Learning and Modeling of Ultrasonic Signals for High-Fidelity Data Compression
ISSN: 1948-5727Published: IEEE 10.10.2022Published in IEEE International Ultrasonics Symposium (Online) (10.10.2022)“… This study explores the development of learning models for massive data compression based on wavelet packet transformation, using machine learning techniques…”
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Conference Proceeding -
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Ultrasonic Modelling for Non-destructive Testing
ISBN: 9783725807574, 3725807574, 9783725807581, 3725807582Published: MDPI - Multidisciplinary Digital Publishing Institute 2024“…Ultrasonic techniques are used for non-destructive purposes to assess the properties and state of structures designed for a wide range of applications…”
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Nonlinear characterization of breast cancer using multi-compression 3D ultrasound elastography in vivo
ISSN: 0041-624X, 1874-9968, 1874-9968Published: Netherlands Elsevier B.V 01.07.2013Published in Ultrasonics (01.07.2013)“…► We report a 3D elasticity imaging and visualization of breast masses in vitro and in vivo…”
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Journal Article -
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Processing algorithms for three-dimensional data compression of ultrasonic radio frequency signals
ISSN: 1751-9675, 1751-9683, 1751-9683Published: The Institution of Engineering and Technology 01.05.2015Published in IET signal processing (01.05.2015)“… In this paper, two algorithms for ultrasonic signal compression are analysed based on: sub-band elimination using discrete wavelet transform…”
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Development of a Wireless and Near Real-Time 3D Ultrasound Strain Imaging System
ISSN: 1932-4545, 1940-9990, 1940-9990Published: United States IEEE 01.04.2016Published in IEEE transactions on biomedical circuits and systems (01.04.2016)“… In this paper, we present a wireless and near real-time 3D ultrasound strain imaging system. It uses a 3D translating device to control a commercial linear ultrasound…”
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3D ultrasonic signal compression algorithms for high signal fidelity
ISSN: 1548-3746Published: IEEE 01.08.2013Published in 2013 IEEE 56th International Midwest Symposium on Circuits and Systems (MWSCAS) (01.08.2013)“…Ultrasonic signal processing applications require huge amounts of data to be processed…”
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Conference Proceeding -
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3D Global Time-Delay Estimation for Shear-Wave Absolute Vibro-Elastography of the Placenta
ISSN: 2694-0604, 1558-4615, 2694-0604Published: IEEE 01.07.2020Published in Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference (01.07.2020)“… Previous studies estimated 3D displacements over ultrasound volumes mostly for quasi-static compression to generate strain images…”
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Conference Proceeding Journal Article -
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A finite element-based machine learning approach for modeling the mechanical behavior of the breast tissues under compression in real-time
ISSN: 0010-4825, 1879-0534, 1879-0534Published: United States Elsevier Ltd 01.11.2017Published in Computers in biology and medicine (01.11.2017)“… Three machine learning models were trained with the data from those simulations. Then, they were used to predict in real-time the deformation of the breast tissues during the compression…”
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Journal Article -
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EMFi-Based Ultrasonic Sensory Array for 3D Localization of Reflectors Using Positioning Algorithms
ISSN: 1530-437X, 1558-1748Published: New York IEEE 01.05.2015Published in IEEE sensors journal (01.05.2015)“…This paper describes a first prototype of an airborne ultrasonic array that combines pulse-compression techniques with positioning algorithms in order to achieve accurate determination of the position…”
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Journal Article -
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DG-PPU: Dynamical Graphs Based Post-Processing of Point Clouds Extracted from Knee Ultrasounds
ISSN: 1945-8452Published: IEEE 14.04.2025Published in Proceedings (International Symposium on Biomedical Imaging) (14.04.2025)“… Our goal is to improve the visualisation of patellar tracking and PFJ motion by utilising 3D registration of point clouds obtained from freehand ultrasound scans taken at various flexion angles…”
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Conference Proceeding -
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Deformation-Aware Robotic 3D Ultrasound
ISSN: 2377-3766, 2377-3766Published: Piscataway IEEE 01.10.2021Published in IEEE robotics and automation letters (01.10.2021)“… Such deformation has an even larger effect on 3D US volumes as the correct compounding is limited by the inconsistent location and geometry…”
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Application of Compressive Sensing to Ultrasound Images: A Review
ISSN: 2314-6133, 2314-6141, 2314-6141Published: Cairo, Egypt Hindawi Publishing Corporation 2019Published in BioMed research international (2019)“…Compressive sensing (CS) offers compression of data below the Nyquist rate, making it an attractive solution in the field of medical imaging, and has been extensively used for ultrasound (US…”
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Complete Complementary Coded Excitation Scheme for SNR Improvement of 2D Sparse Array Ultrasound Imaging
ISSN: 0018-9294, 1558-2531, 1558-2531Published: United States IEEE 01.03.2024Published in IEEE transactions on biomedical engineering (01.03.2024)“…Driving the numerous elements of 2D matrix arrays for 3D ultrasound imaging is very challenging in terms of cable size, wiring and data rate…”
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Research on high-resolution improved projection 3D localization algorithm and precision assembly of parts based on virtual reality
ISSN: 0941-0643, 1433-3058Published: London Springer London 01.01.2019Published in Neural computing & applications (01.01.2019)“…” Assembly process design technology and algorithm based on virtual reality and artificial intelligence is an effective way to solve the above problems…”
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Efficient Low-Resource Compression of HIFU Data
ISSN: 2078-2489, 2078-2489Published: Basel MDPI AG 01.07.2018Published in Information (Basel) (01.07.2018)“… Typically, it is necessary to save hundreds of gigabytes during simulation. We propose a novel algorithm for time-varying simulation data compression specialised for HIFU…”
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Spatial registration of temporally separated whole breast 3D ultrasound images
ISSN: 0094-2405, 2473-4209, 0094-2405Published: United States American Association of Physicists in Medicine 01.09.2009Published in Medical physics (Lancaster) (01.09.2009)“…The purpose of this study was to evaluate the potential for use of image volume based registration (IVBaR) to aid in measurement of changes in the tumor during…”
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Quantitative validation of two model-based methods for the correction of probe pressure deformation in ultrasound
ISSN: 1861-6429, 1861-6410, 1861-6429Published: Cham Springer International Publishing 01.02.2024Published in International journal for computer assisted radiology and surgery (01.02.2024)“… This force induces a deformation of the tissues underlying the probe. The distorted images deteriorate the quality of the reconstructed 3D US image…”
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