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Optimal geometrical configuration of a double-scattering compton camera for maximum imaging resolution and sensitivity

  • Hee Seo
  • , Se Hyung Lee
  • , Chan Hyeong Kim*
  • , So Hyun An
  • , Ju Hahn Lee
  • , Chun Sik Lee
  • *Corresponding author for this work
  • Hanyang University
  • Korea Atomic Energy Research Institute
  • Chung-Ang University

Research output: Contribution to journalJournal articlepeer-review

Abstract

A novel type of Compton camera, called a double-scattering Compton imager (DOCI), is under development for nuclear medicine and molecular imaging applications. Two plane-type position-sensitive semiconductor detectors are employed as the scatterer detectors, and a 3″×3″ cylindrical NaI(Tl) scintillation detector is employed as the absorber detector. This study determined the optimal geometrical configuration of these component detectors to maximize the performance of the Compton camera in imaging resolution and sensitivity. To that end, the Compton camera was simulated very realistically, with the GEANT4 detector simulation toolkit, including various detector characteristics such as energy resolution, spatial resolution, energy discrimination, and Doppler energy broadening. According to our simulation results, the Compton camera is expected to show its maximum performance when the two scatterer detectors are positioned in parallel, with ∼8 cm of separation. The Compton camera will show the maximum performance also when the gamma-ray energy is about 500 keV, which suggests that the Compton camera is a suitable device to image the distribution of the positron emission tomography (PET) isotopes in the human body.

Original languageEnglish
Pages (from-to)80-83
Number of pages4
JournalNuclear Instruments and Methods in Physics Research, Section A: Accelerators, Spectrometers, Detectors and Associated Equipment
Volume591
Issue number1
DOIs
StatePublished - 2008.06.11

Keywords

  • Compton camera
  • Double-scattering
  • Imaging resolution
  • Monte Carlo
  • Optimization

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