SVIBOR - Papers - project code: 1-03-036

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SVIBOR

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Published papers on project 1-03-036


Quoted papers: 0
Other papers: 6
Total: 6


  1. Type of paper: Book

    Title:


  2. Type of paper: Paper in journal

    Title:


  3. Type of paper: Paper in proceedings

    Title: DETERMINATION OF BLOOD FLOW VELOCITY

    Authors:
    Žauhar, Gordana (142294)
    Breyer, Branko
    Editors
    Breyer, Branko
    Engelhart, Jurgen Peter
    Išgum, Velimir
    Hill, Christofer R.
    Kern, Josipa
    Magjarević, Ratko
    Nanković, Vjekoslav
    Naszlady, Attila
    Neuman, Michael
    Nikolić, Vasilije
    Orlić, Dubravko
    Plonsey, Robert
    Šantić, Ante
    Tonković, Stanko
    Valentić-Peruzović, Melita
    Vodovnik, Lojze
    Zobundžija, Mladen
    Proceedings title: Proceedings 10th International Symposium on Biomedical Engineering '94
    Language: engleski
    Place: Zagreb
    Year: 1994
    ISBN/ISSN: 953-6037-06-8
    Pages: from 103 to 108
    Meeting: 10th International Symposium on Biomedical Engineering '94
    Held: from 11/24/94 to 11/26/94
    Keywords: blood flow velocity, autocorrelation, ultrasonic

  4. Type of paper: Paper in proceedings

    Title: MEASUREMENT OF BLOOD FLOW VELOCITY BY THE TIME DOMAIN AUTOCORRELATION

    Authors:
    Žauhar, Gordana (142294)
    Breyer, Branko
    Editors
    Richter, Jurgen
    Proceedings title: MEDIZINISCHE PHYSIK 1995 Rontgen-Gedachtnis-Kongress
    Language: engleski
    Place: Wurzburg, Njemačka
    Year: 1995
    ISBN/ISSN: 3-925218-12-2
    Pages: from 408 to 409
    Meeting: Rontgen-Gedachtnis-Kongress
    Held: from 09/20/95 to 09/23/95
    Keywords: blood flow velocity, autocorrelation, ultrasonic

  5. Type of paper: M.A.

    Title: MEASURING OF BLOOD FLOW IN DOMAIN OF TIME
    Faculty: Prirodoslovno-matematički fakultet SVEUČILIŠTE U ZAGREBU
    Author: ŽAUHAR GORDANA
    Date of defense: 07/01/94
    Language: hrvatski
    Number of pages: 59
    Summary: In order to find a new method for measuring the velocity of the blood flow, the autocorrelations of functions which are the result of reflections of ultrasonic waves on red blood cells have been studied. For simpler cases autocorrelations have been calculated analytically. As real functions are more complex than the functions which have been studied by analytical calculations, the real blood flow has been simulated by computer. The autocorrelation has been calculated from the functions produced in this way. During the generation of the function by computer the form of ultrasonic beam has been taken into consideration, so it is supposed that the beam has the circular form.


  6. Type of paper: Manuscript

    Title: PHYSICS FOR MEDICINE STUDENTS

    Authors:
    Šolić, Franjo (47785)
    Language: hrvatski
    Other: -skripta za nastavne potrebe -izdavač: Medicinski fakultet, Rijeka, 1994.


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