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An effective reconstruction algorithm of attenuation map from post-injection PET transmission scans

  • M. Y. Chang*
  • , C. H. Hsu
  • , I. T. Hsiao
  • , P. F. Kao
  • *Corresponding author for this work
  • Triservice General Hospital Taiwan
  • National Tsing Hua University
  • Chang Gung University

Research output: Contribution to journalConference articlepeer-review

Abstract

We present an effective reconstruction algorithm of attenuation map from post-injection transmission scans. The post-injection transmission scan data are modeled as a collection of independent Poisson observations which consist of true transmission, cross-containment emission, and random coincidences. The mean values of cross-containment emission and random data are estimated by using Luk's approximation and Zaers' correction method, respectively. The reconstruction of the unknown attenuation map is also modeled using a Markov random field. A pre-conditioned conjugate gradient algorithm is then used to compute a maximum a posteriori estimate of the attenuation map by maximizing over the posterior density. Evaluations are conducted on clinical data collected from a CTI EXACT HR+ scanner. Experimental results show that the reconstructed results of attenuation map by the described reconstruction algorithm match well with theoretical values of soft tissue, bone and lung under 512 KeV photons.

Original languageEnglish
Article numberM11-209
Pages (from-to)2826-2830
Number of pages5
JournalIEEE Nuclear Science Symposium Conference Record
Volume4
StatePublished - 2003
Event2003 IEEE Nuclear Science Symposium Conference Record - Nuclear Science Symposium, Medical Imaging Conference - Portland, OR, United States
Duration: 19 10 200325 10 2003

Keywords

  • Attenuation Correction
  • Attenuation Map
  • Post-Injection Transmission Scan
  • Transmission Image Reconstruction

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