Last edited by Yomi
Friday, July 24, 2020 | History

4 edition of Monte Carlo modeling for intravascular brachytherapy sources found in the catalog.

Monte Carlo modeling for intravascular brachytherapy sources

Monte Carlo modeling for intravascular brachytherapy sources

  • 356 Want to read
  • 5 Currently reading

Published by U.S. Dept. of Commerce, Technology Administration, National Institute of Standards and Technology in Gaithersburg, MD .
Written in English

    Subjects:
  • Radioisotope brachytherapy,
  • Monte Carlo method

  • Edition Notes

    StatementStephen M. Seltzer
    SeriesNISTIR -- 6871
    ContributionsNational Institute of Standards and Technology (U.S.)
    The Physical Object
    FormatMicroform
    Pagination40, [25] p.
    Number of Pages40
    ID Numbers
    Open LibraryOL13630751M
    OCLC/WorldCa50584129

    Low-Dose-Rate Brachytherapy Glenn P. Glasgow Brachytherapy still prospers! The prior (2nd edition) chapter focused on historical and basic concepts and developments between and This . Academic Journals Database is a universal index of periodical literature covering basic research from all fields of knowledge, and is particularly strong in medical research, humanities and social sciences. .

    The concept of Monte Carlo has shown its impact on almost all segments of not just science but even in management and arts. Since its evolution in ’s, it has grown surprisingly to assist every field. Cited by: 2. Subject – calculation of radiation dose distributions in intravascular brachytherapy. Result - received Master’s degree, two publications from thesis. Eduardo Loureiro, PhD student, Departamento de .

    Intravascular ultrasound (IVUS) elastography is a promising tool for studying atherosclerotic plaque composition and assessing plaque vulnerability. The performance of the general model using these .   Wilczek K, Walichiewicz S, Petelenz B, et al. Post-stenting intravascular brachytherapy trials on hypercholesterolemic rabbits using 32 P liquid sources: implications for prevention of in-stent Author: F. F. (Russ) Knapp, Ashutosh Dash.


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Monte Carlo modeling for intravascular brachytherapy sources Download PDF EPUB FB2

Get this from a library. Monte Carlo modeling for intravascular brachytherapy sources. [Stephen M Seltzer; National Institute of Standards and Technology (U.S.)].

Monte Carlo modeling for intravascular brachytherapy sources [microform] / Stephen M. Seltzer U.S. Dept. of Commerce, Technology Administration, National Institute of Standards and Technology.

Hello, Sign in. Account & Lists Account Sign in Account & Lists Returns & Orders. Try Prime Cart. The concise fourth chapter, “Monte Carlo modeling for intravascular brachytherapy sources,” is authoritative, covering pertinent literature, existing models, and uses of the computer codes that.

The concise fourth chapter, ‘‘Monte Carlo modeling for intravascular brachytherapy sources,’’ is authoritative, covering pertinent literature, existing models, and uses of the computer codes that.

Dosimetric Characteristics of the Brachytherapy Sources Based on Monte Carlo Method (a) r 2 G(r, θ)/G(r 0, θ 0) for ideal seed orientation. r (cm) 0° 10° 20° 30° 40° 50° 60° Monte Carlo Simulation of HDR Ir Brachytherapy Cancer Treatments The algorithm is tested versus Monte Carlo simulations for point sources of energies,and keV.

In addition, a general Monte Carlo (MC) model comprising 32 P patch source and extrapolation chamber was also developed to estimate the surface dose rates. Materials and methods Radioactive source.

Cited by: 2. Beam modeling and beam model commissioning for Monte Carlo dose calculation-based radiation therapy treatment planning: Report of AAPM Task Group AAPM Recommendations on.

Intravascular brachytherapy (IVBT) is used for the prevention of restenosis after angioplasty of a coronary or peripheral artery obstruction. Several Monte Carlo codes have been used to study IVBT sources. @article{osti_, title = {EGSnrc-based Monte Carlo dosimetry of CSA1 and CSA2 {sup }Cs brachytherapy source models}, author = {Selvam, T.

Palani and Sahoo, S. and Vishwakarma, R. S.}. Electronic Intracavitary Brachytherapy Quality Management based on Risk Analysis: The Report of AAPM TG Report TG Beam modeling and beam model commissioning for Monte Carlo. Monte Carlo Techniques in Radiation Therapy explores the use of Monte Carlo methods for modeling various features of internal and external radiation sources, including light ion beams.

The book—the. Uncertainty in theoretical modeling 10 Treatment planning and reporting General General aspects of treatment planning Documentation in ophthalmic brachytherapy Uncertainty of.

The Use of Computers in Radiation Therapy XIIIth International Conference Heidelberg, Germany May 22–25, Derivation of dosimetry data for brachytherapy sources using Monte Carlo for primary. @article{osti_, title = {Targeting mitochondria in cancer cells using gold nanoparticle-enhanced radiotherapy: A Monte Carlo study}, author = {Kirkby, Charles and Ghasroddashti, Esmaeel and.

buy iso (r) clinical dosimetry - beta radiation sources for brachytherapy from sai global. A review of radiation dosimetry applications using the MCNP Monte Carlo code for modeling the dose distributions around high dose rate brachytherapy sources, and for evaluating the dosimetric.

Evaluation of fire models for nuclear power plant applications, cable tray fires international panel report. Title Monte Carlo modeling for intravascular brachytherapy sources.

Seltzer, Stephen M. Get this from a library. The use of computers in radiation therapy: XIIIth international conference: Heidelberg, Germany, May[Wolfgang Schlegel; Thomas Bortfeld;] -- Computers have.

Data are presented according to the AAPM TGU1 formalism, with modified interpolation and extrapolation techniques of the AAPM TGU1S1 report for the 2D anisotropy.

Dose rate table for a 32 P intravascular brachytherapy source from Monte Carlo calculations. Med Phys. ;– Med Phys. ;– Google ScholarCited by: Comparison of organ doses for patients undergoing balloon brachytherapy of the breast with HDR Ir or electronic sources using Monte Carlo simulations in a heterogeneous human phantom.

Medical .