A novel method improving the imaging resolution of a table-top Compton camera

  • Seo, Hee
  • Lee, Se Hyung
  • Jeong, Jong Hwi
  • Lee, Ju Hahn
  • Lee, Chun Sik
  • ... Kim, Chan Hyeong
  • 외 1명
Citations

SCOPUS

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초록

For a table-top Compton camera, which is currently under development in our group, the interaction position resolution of the absorber detector is a critical or limiting detector parameter that most seriously affects the imaging resolution of the Compton camera. Currently, it is assumed that all the interactions occur at the centers of the detector segments of the absorber detector, which is simple, but obviously not the best choice considering that the interaction depths of the photons in the absorber detector is not distributed uniformly, especially for the low-energy photons. To this end, the present study develops a novel method, called average interaction depth (AID) method to improve the imaging resolution of Compton camera by additionally considering the interaction depth of the incident photon in the absorber detector. Our simulation studies with Geant4 show that the imaging resolution of Compton camera can be significantly improved by using the AID method. The imaging resolution of the table-top Compton camera was improved from 9.9 mm to 7.6 mm in full width at half maximum (FWHM) for a 511 keV y point source. For a 364 keV y point source, the imaging resolution was improved more significantly, i.e., from 11.4 mm to 7.2 mm.

키워드

CamerasDetectorsFlow interactionsFull width at half maximumLaws and legislationMedical imagingPhotonsCompton camerasImaging resolutionsInteraction depthLow-energy photonsNovel methodsNuclear sciencesPoint sourcesPosition resolutionSimulation studiesImaging techniques
제목
A novel method improving the imaging resolution of a table-top Compton camera
저자
Seo, HeeLee, Se HyungJeong, Jong HwiLee, Ju HahnLee, Chun SikLee, Jae SungKim, Chan Hyeong
DOI
10.1109/NSSMIC.2007.4436758
발행일
2007-10
유형
Conference Paper
저널명
IEEE Nuclear Science Symposium Conference Record
4
페이지
2972 ~ 2975