Skip to navigation Skip to content
  • Woodruff
  • Business
  • Health Sciences
  • Law
  • MARBL
  • Oxford College
  • Theology
  • Schools
    • Undergraduate

      • Emory College
      • Oxford College
      • Business School
      • School of Nursing

      Community

      • Emory College
      • Oxford College
      • Business School
      • School of Nursing
    • Graduate

      • Business School
      • Graduate School
      • School of Law
      • School of Medicine
      • School of Nursing
      • School of Public Health
      • School of Theology
  • Libraries
    • Libraries

      • Robert W. Woodruff
      • Business
      • Chemistry
      • Health Sciences
      • Law
      • MARBL
      • Music & Media
      • Oxford College
      • Theology
    • Library Tools

      • Course Reserves
      • Databases
      • Digital Scholarship (ECDS)
      • discoverE
      • eJournals
      • Electronic Dissertations
      • EmoryFindingAids
      • EUCLID
      • ILLiad
      • OpenEmory
      • Research Guides
  • Resources
    • Resources

      • Administrative Offices
      • Emory Healthcare
      • Academic Calendars
      • Bookstore
      • Campus Maps
      • Shuttles and Parking
      • Athletics: Emory Eagles
      • Arts at Emory
      • Michael C. Carlos Museum
      • Emory News Center
      • Emory Report
    • Resources

      • Emergency Contacts
      • Information Technology (IT)
      • Outlook Web Access
      • Office 365
      • Blackboard
      • OPUS
      • PeopleSoft Financials: Compass
      • Careers
      • Human Resources
      • Emory Alumni Association
  • Browse
    • Works by Author
    • Works by Journal
    • Works by Subject
    • Works by Dept
    • Faculty by Dept
  • For Authors
    • How to Submit
    • Deposit Advice
    • Author Rights
    • Publishing Your Data
    • FAQ
    • Emory Open Access Policy
    • Open Access Fund
  • About OpenEmory
    • About OpenEmory
    • About Us
    • Citing Articles
    • Contact Us
    • Privacy Policy
    • Terms of Use
 
Contact Us

Filter Results:

Year

  • 2017 (1)

Author

  • Bliznakova, Kristina (1)
  • Dance, David R. (1)
  • Fei, Baowei (1)
  • Mettivier, Giovanni (1)
  • Russo, Paolo (1)
  • Sarno, Antonio (1)
  • Young, Kenneth C. (1)
  • van Engen, Ruben E. (1)

Subject

  • Biophysics, Medical (1)
  • Health Sciences, Medicine and Surgery (1)

Keyword

  • biomedicin (1)
  • breast (1)
  • coeffici (1)
  • compress (1)
  • comput (1)
  • computedtomographi (1)
  • convers (1)
  • dgn (1)
  • dose (1)
  • dosimetri (1)
  • factor (1)
  • glandular (1)
  • imag (1)
  • life (1)
  • magnif (1)
  • mammographi (1)
  • mean (1)
  • medic (1)
  • medicin (1)
  • nuclear (1)
  • protocol (1)
  • radiat (1)
  • radiolog (1)
  • ray (1)
  • scienc (1)
  • spectra (1)
  • technolog (1)
  • tomographi (1)
  • uk (1)
  • x (1)
  • xrayspectra (1)

Author department

  • Rad: Physics & Comp Lab (1)

Search Results for all work with filters:

  • Di Lillo, Francesca
  • Sechopoulos, Ioannis
  • Engineering, Biomedical
  • Medical Physics
  • spot

Work 1 of 1

Sorted by relevance

Article

A Monte Carlo model for mean glandular dose evaluation in spot compression mammography

by Antonio Sarno; David R. Dance; Ruben E. van Engen; Kenneth C. Young; Paolo Russo; Francesca Di Lillo; Giovanni Mettivier; Kristina Bliznakova; Baowei Fei; Ioannis Sechopoulos

2017

Subjects
  • Engineering, Biomedical
  • Health Sciences, Medicine and Surgery
  • Biophysics, Medical
  • File Download
  • View Abstract

Abstract:Close

Purpose: To characterize the dependence of normalized glandular dose (DgN) on various breast model and image acquisition parameters during spot compression mammography and other partial breast irradiation conditions, and evaluate alternative previously proposed dose-related metrics for this breast imaging modality. Methods: Using Monte Carlo simulations with both simple homogeneous breast models and patient-specific breasts, three different dose-related metrics for spot compression mammography were compared: the standard DgN, the normalized glandular dose to only the directly irradiated portion of the breast (DgNv), and the DgN obtained by the product of the DgN for full field irradiation and the ratio of the mid-height area of the irradiated breast to the entire breast area (DgNM). How these metrics vary with field-of-view size, spot area thickness, x-ray energy, spot area and position, breast shape and size, and system geometry was characterized for the simple breast model and a comparison of the simple model results to those with patient-specific breasts was also performed. Results: The DgN in spot compression mammography can vary considerably with breast area. However, the difference in breast thickness between the spot compressed area and the uncompressed area does not introduce a variation in DgN. As long as the spot compressed area is completely within the breast area and only the compressed breast portion is directly irradiated, its position and size does not introduce a variation in DgN for the homogeneous breast model. As expected, DgN is lower than DgNv for all partial breast irradiation areas, especially when considering spot compression areas within the clinically used range. DgNMunderestimates DgN by 6.7% for a W/Rh spectrum at 28 kVp and for a 9 × 9 cm2compression paddle. Conclusion: As part of the development of a new breast dosimetry model, a task undertaken by the American Association of Physicists in Medicine and the European Federation of Organizations of Medical Physics, these results provide insight on how DgN and two alternative dose metrics behave with various image acquisition and model parameters.
Site Statistics
  • 16,733
  • Total Works
  • 3,624,211
  • Downloads
  • 1,100,122
  • Downloads This Year
  • 6,807
  • Faculty Profiles

Copyright © 2016 Emory University - All Rights Reserved
540 Asbury Circle, Atlanta, GA 30322-2870
(404) 727-6861
Privacy Policy | Terms & Conditions

v2.2.8-dev

Contact Us Recent and Popular Items
Download now