PubMed Health⌕ Search

Biomedical subjects

J A Bieszk

Publications and source records attributed to J A Bieszk.

2 recordsLinked to original sources

Evaluation of SPECT angular sampling effects: continuous versus step-and-shoot acquisition.

In order to understand the angular dependence of reconstructed images, a "hot rod" phantom was simulated with six rod sizes ranging from 12.7 mm to 4.8 mm, arranged in 60 degree sectors. This simulation was used to evaluate changes caused by increasing the number of views from 60 to 180 and to compare results to published angular sampling requirements. Also, a comparison was made of step-and-shoot and continuous data acquisition modes. Experimental phantom data were taken for three acquisition modes and for two levels of image statistics and compared with the simulation. This study shows the effects of angular aliasing and that image quality generally improves with increasing views even if total image counts are reduced. Despite smoothing effects, a continuous (180 view) scan is, in most cases, the preferred acquisition mode because it offers the highest angular sampling, as well as maximum counting efficiency.

Models, Structural↗

Performance changes of an Anger camera in magnetic fields up to 10 G.

Magnetic fields much larger than the earth's magnetic field can exist many feet away from NMR units. Gamma camera manufacturers already shield photomultiplier tubes from the earth's magnetic field (approximately 0.5 G). The effects of larger magnetic fields on an Anger camera, were made in fields up to 10 G. Sensitivity and positional stability were studied as a function of gantry angle in a magnetic field. Scans of uniform and hot rod sections of and ECT phantom were also performed. No visible artifacts were found in reconstructions of the phantom measured in a 5-G magnetic field, although some small sensitivity and linearity effects did exist. In 10-G fields, planar and reconstructed images were grossly distorted. Magnetic shielding placed across the collimator reduced the influence of the magnetic field but at a cost in sensitivity that varies with photon energy.

Evaluation Studies as Topic↗