Published December 20, 1990 | Version v1
Journal article

Monte Carlo determination of emerging energy spectra for diagnostically realistic radiopharmaceutical distributions

  • 1. Yale Univ., New Haven, CT (USA). Dept. of Diagnostic Radiology
  • 2. Columbia Univ., New York (USA). Coll. of Physicians and Surgeons

Description

In order to realistically define the internal organs of a representative human, 150 transverse CT scans of an (average) male patient were acquired from head to mid-thigh on the GE 9800 Quick scanner. The reconstructed transverse slices were read into a microVAX 3500 and members of the medical staff outlined 42 separate internal organs contained in the transverse slice. This digitized human phantom serves as an input to a Monte Carlo program which models photoelectric absorption and scatter processes of gamma-rays in matter. The organs can be 'filled' with variable amounts of radiopharmaceuticals and the simulation computes the emerging energy spectra for a given source distribution and detector position. The simulation follows gamma-ray histories out to a maximum of 32 scatter events. Scatter spectra are histogrammed into energy distributions of gamma-rays which have undergone a specific number of scatter events before emerging from the phantom. A sum of all these scatter spectra yields the simulated total spectra. Simulated total spectra of diagnostically relevant human distributions are compared to spectra acquired from nuclear medicine clinical patients. (orig.)

Additional details

Publishing Information

Journal Title
Nuclear Instruments and Methods in Physics Research, Section A
Journal Volume
299
Journal Issue
1-3
Series
Nucl. Instrum. Methods Phys. Res., Sect. A.
Journal Page Range
544-547
ISSN
0168-9002
CODEN
NIMAE

Conference

Title
Radiation measurements and applications.
Acronym
7. symposium on X-ray and gamma-ray sources and applications
Dates
21-24 May 1990.
Place
Ann Arbor, MI (USA).

Optional Information

Contract/Grant/Project number
Contract DE-FG02-88ER60724