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Karwat P., Algorithm for Computationally Efficient Imaging of Sound Speed in Conventional Ultrasound Sonography, ARCHIVES OF ACOUSTICS, 48, 4, 549-558, 2023 | |
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Karwat P., Computationally efficient algorithm for sound speed imaging in pulse-echo ultrasound, 2019 ICU BRUGES, 2019 INTERNATIONAL CONGRESS ON ULTRASONICS, 2019-09-03/09-06, BRUGES (BE), 38, 1, 020005-1-6, 2019 | |
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Karwat P., Computationally efficient method for reconstruction of sound speed in soft tissues, OSA 16, LXIII OTWARTE SEMINARIUM Z AKUSTYKI, 2016-09-13/09-16, BIAŁOWIEŻA (PL), 619-, 2016 | |
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Karwat P., Klimonda Z., Lewandowski M., Nowicki A., Imaging Quality of the Classical Beamforming, SAFT and Plane Wave Imaging – Experimental Results, IUS 2012, IEEE INTERNATIONAL ULTRASONICS SYMPOSIUM, 2012-10-07/10-10, DRESDEN (DE), 1283-1286, 2012 | |
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Karwat P., Klimonda Z., Piotrzkowska-Wróblewska H., Dobruch-Sobczak K., Litniewski J., Quantitative ultrasound examination of peritumoral tissue improves classification of breast lesions, IUS 2019, IEEE, INTERNATIONAL ULTRASONICS SYMPOSIUM, 2019-10-06/10-09, GLASGOW (GB), 1509-1511, 2019 | |
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Karwat P., Klimonda Z., Sęklewski M., Lewandowski M., Nowicki A., Metoda przerzedzania danych dla algorytmu syntetycznej apertury nadawczej, 57 OTWARTE SEMINARIUM Z AKUSTYKI, 2010-09-20/09-24, GLIWICE (PL), 91-94, 2010 | |
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Karwat P., Klimonda Z., Seklewski M., Lewandowski M., Nowicki A., Data reduction method for synthetic transmit aperture algorithm, ARCHIVES OF ACOUSTICS, 35, 4, 635-642, 2010 | |
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Karwat P., Klimonda Z., Styczyński G., Szmigielski C., Litniewski J., Aortic root movement correlation with the function of the left ventricle, SCIENTIFIC REPORTS, 11, 4473-1-8, 2021 | |
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Karwat P., Kujawska T., Lewin P.A., Secomski W., Gambin B., Litniewski J., Determining temperature distribution in tissue in the focal plane of the high (>100 W/cm2) intensity focused ultrasound beam using phase shift of ultrasound echoes, ULTRASONICS, 65, 211-219, 2016 | |
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Karwat P., Kujawska T., Secomski W., Gambin B., Litniewski J., Application of ultrasound to noninvasive imaging of temperature distribution induced in tissue, HYDROACOUSTICS, 19, 219-228, 2016 | |
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Karwat P., Litniewski J., Kujawska T., Secomski W., Krawczyk K., Noninvasive Imaging of Thermal Fields Induced in Soft Tissues In Vitro by Pulsed Focused Ultrasound Using Analysis of Echoes Displacement, ARCHIVES OF ACOUSTICS, 39, 1, 139-144, 2014 | |
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Karwat P., Litniewski J., Secomski W., Kujawska T., Krawczyk K., Kruglenko E., Gambin B., Non-invasive imaging of thermal fields induced in soft tissues in vitro by focused ultrasound using analysis of ultrasonic echoes displacement, INTERNATIONAL CONFERENCE BIOMEDICAL ENGINEERING, 2012-10-25/10-26, KAUNAS (LT), 66-72, 2012 | |
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Karwat P., Litniewski J., Secomski W., Kujawska T., Krawczyk K., Kruglenko E., Gambin B., Nowicki A., Nieinwazyjne obrazowanie temperatury tkanki miękkiej in vitro metodą analizy przemieszczenia ech ultradźwiękowych, 59TH OPEN SEMINAR ON ACOUSTICS, 2012-09-10/09-14, BOSZKOWO (PL), 101-104, 2012 | |
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Karwat P., Nowicki A., Lewandowski M., Blood scattering model for pulsed doppler, ARCHIVES OF ACOUSTICS, 34, 4, 677-685, 2009 | |
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Karwat P.,Piotrzkowska-Wróblewska H.,Klimonda Z.,Dobruch-Sobczak K.,Litniewski J., Monitoring Breast Cancer Response to Neoadjuvant Chemotherapy Using Probability Maps Derived from Quantitative Ultrasound Parametric Images, IEEE TRANSACTIONS ON BIOMEDICAL ENGINEERING, 71, 9, 2620-2629, 2024 | |