PubMed Health⌕ Search

Biomedical subjects

K A Blokland

Publications and source records attributed to K A Blokland.

3 recordsLinked to original sources

Statistical tomographic reconstruction: how many more iterations to go?

Single-photon emission tomography (SPET) is a popular, commonly used method to image the three-dimensional distribution of a radiopharmaceutical within the human body. In clinical studies, filtered back-projection (FBP) still seems to be the method of choice for tomographic reconstruction, although most manufacturers of gamma cameras include iterative statistical reconstruction methods in their basic software package. Quite a lot of progress in the development of these iterative methods has been made during the past few years and promising typical clinical examples have been shown. But there is still a need for a clinical comparison of the new and the old methods in patient studies. The processing time, even on state-of-the-art computer systems, may be the most prohibitive factor for using the more advanced iterative reconstruction methods including scatter and attenuation correction.

Humans↗

Quantitative analysis in single photon emission tomography (SPET).

Quantitative analysis can improve the sensitivity and specificity of single photon emission tomography (SPET) procedures, as well as reduce inter- and intraobserver variabilities. Quantification of the radioactivity distribution is the ultimate goal of SPET. In this review we consider the basic requirements for an optimum three-dimensional reconstruction of the radionuclide distribution to enable quantification. Attenuation and scatter correction as well as varying resolution are the major problems. In the older SPET systems quantification was hampered by the lack of system sensitivity and sufficient computer power. Therefore, the imaging system was often assumed to be shift invariant and linear and the attenuation throughout the object uniform. More sophisticated solutions have been proposed and with more or less success implemented, but not for application in daily practice. Knowledge (measurement) of the attenuation is often required. New generation SPET systems employing multi-detectors and super minicomputers will ease the implementation of these solutions.

Humans↗