Skip to main content
U.S. Department of Energy
Office of Scientific and Technical Information

Reduction of truncation artifacts in fan beam transmission imaging using a spatially varying gamma prior

Journal Article · · IEEE Transactions on Nuclear Science
DOI:https://doi.org/10.1109/23.489424· OSTI ID:194791
; ; ; ; ;  [1]
  1. Univ. of Massachusetts Medical Center, Worcester, MA (United States)

Using fan beam transmission imaging to obtain an attenuation estimate of an object for attenuation correction is limited because the object may not be completely in the field of view of the camera at all angles. This truncation of object data creates artifacts in the attenuation map during reconstruction which may result in problems in the attenuation correction of the emission image. To improve the quality of the attenuation map, the authors have used information from the scatter window reconstruction of projections from a parallel hole collimator on one of the heads of the SPECT system. This scatter window reconstruction is used to create a segmentation-based attenuation map of the object. The authors use this map as a pixel-by-pixel gamma prior to aid in the iterative reconstruction of the final attenuation map. In the fully sampled central region, use of the segmentation map information is unnecessary; but in the poorly samples, outer region, the use of the segmentation map is essential to obtain an accurate reconstruction. The authors use a spatially varying weight function for the gamma prior to reflect their confidence in the transmission data in the central region while emphasizing the prior in the outer region. The result is a high-quality density map over both the fully sampled and poorly sampled regions. Furthermore, since the line integrals for the transmission data are preserved in the iterative reconstruction, the algorithm does not require precise determinations of the attenuation coefficients in the segmentation maps to create an accurate attenuation map.

OSTI ID:
194791
Report Number(s):
CONF-941061--
Journal Information:
IEEE Transactions on Nuclear Science, Journal Name: IEEE Transactions on Nuclear Science Journal Issue: 6Pt2 Vol. 42; ISSN 0018-9499; ISSN IETNAE
Country of Publication:
United States
Language:
English

Similar Records

Reduction of truncation artifacts in fan beam transmission by using parallel beam emission data
Journal Article · Tue Aug 01 00:00:00 EDT 1995 · IEEE Transactions on Nuclear Science · OSTI ID:148083

An investigation of dual energy transmission measurements in simultaneous transmission emission imaging
Journal Article · Thu Nov 30 23:00:00 EST 1995 · IEEE Transactions on Nuclear Science · OSTI ID:194803

The effect of truncation reduction in fan beam transmission for attenuation correction of cardiac SPECT
Journal Article · Thu Aug 01 00:00:00 EDT 1996 · IEEE Transactions on Nuclear Science · OSTI ID:379765