Published January 2010 | Version v1
Journal article

Individual virtual phantom reconstruction for organ dosimetry based on standard available phantoms

  • 1. Islamic Azad University, Science and Resaerch Branch, Faculty of Engineering, Tehran (Iran, Islamic Republic of)
  • 2. University of Tehran, College of Engineering, School of Electrical and Computer Engineering, Control and Intelligent Processing Center of Excellence, Tehran (Iran, Islamic Republic of)
  • 3. Sharif University of Technology, Electrical and Elctronic Engineering School, Tehran (Iran, Islamic Republic of)
  • 4. Tehran Univeristy of Medical Sciences, Sina Hospital, Department of Interventional Radiology, Tehran (Iran, Islamic Republic of)
  • 5. Ristumeikan Univeristy, College of Information and Science , Shiga (Japan)
  • 6. Osaka University, Graduate School of Medicine, Division of Image Analysis, Osaka (Japan)

Description

In nuclear medicine application often it is required to use computational methods for evaluation of organ absorbed dose. Monte Carlo Simulation and phantoms have been used in many works before. The shape, size and volume In organs are varied, and this variation will produce error in dose calculation if no correction is applied. Materials and Methods: A computational framework for constructing individual phantom for dosimetry was performed on five liver CT scan data sets of Japanese normal individuals. The Zubal phantom was used as an original phantom to be adjusted by each individual data set. This registration was done by Spherical Harmonics and Thin-Plate Spline methods. Hausdorff distance was calculated for each case. Results: Result of Hausdorff distance for five lndividual phantoms showed that before registration ranged from 140.9 to 192.1, and after registration it changed to 52.5 to 76.7. This was caused by Index similarity ranged from %56.4 to %70.3. Conclusion: A new and automatic three-dimensional (3D) phantom construction approach was-suggested for individual internal dosimetry simulation via Spherical Harmonics and Thin-Plate Spline methods. The results showed that the Individual comparable phantom can be calculated with acceptable accuracy using geometric registration. This method could be used for race-specific statistical phantom modeling with major application in nuclear medicine for absorbed dose calculation.

Availability note (English)

Available from Atomic Energy Organization of Iran

Additional details

Publishing Information

Journal Title
Iranian Journal of Radiation Research (Print)
Journal Volume
7
Journal Issue
no.4
Journal Page Range
p. 201-206
ISSN
1728-4554

INIS

Country of Publication
Iran, Islamic Republic of
Country of Input or Organization
Iran, Islamic Republic of
INIS RN
42044736
Subject category
S61: RADIATION PROTECTION AND DOSIMETRY;
Descriptors DEI
DOSIMETRY; HAUSDORFF SPACE; IMAGES; LIVER; MONTE CARLO METHOD; PHANTOMS; RADIATION DOSES; SPHERICAL HARMONICS; THREE-DIMENSIONAL CALCULATIONS
Descriptors DEC
BODY; CALCULATION METHODS; DIGESTIVE SYSTEM; DOSES; FUNCTIONS; GLANDS; MATHEMATICAL SPACE; MOCKUP; ORGANS; SPACE; STRUCTURAL MODELS