Single-photon transmission measurements in positron tomography using137Cs
- 1 July 1995
- journal article
- research article
- Published by IOP Publishing in Physics in Medicine & Biology
- Vol. 40 (7) , 1255-1266
- https://doi.org/10.1088/0031-9155/40/7/008
Abstract
Transmission measurements are an essential step in the quantification of radioisotope distributions in vivo using positron tomographic techniques. The development of a new technique for measuring transmission data that relies on the detection of photons in 'singles' mode rather than 'coincidence' mode no longer restricts the choice of transmission sources to those that decay by positron emission. The motivation for using the 'singles' mode of operation is the substantial increase in count rate that can be achieved. This corresponds to a great increase in the statistical accuracy of the transmission data. We propose 137Cs as a suitable isotope for this purpose. 137Cs is more economical than 68Ge, the traditional source used for transmission measurements, in terms of longer half-life and lower financial cost. 137Cs can be used for transmission measurements without any recalibration of the tomograph, and the estimated spatial resolution is comparable to that obtained using annihilation photons. A simple extrapolation method is developed, which allows extrapolation of the attenuation coefficients measured at 662 keV to 511 keV. A dual-energy-window technique, whereby correction can be made on-the-fly during acquisition, is used for scatter correction. The measured linear attenuation coefficients agree with predicted values.Keywords
This publication has 9 references indexed in Scilit:
- Photon mass attenuation and energy-absorption coefficientsPublished by Elsevier ,2002
- Addition of noise by scatter correction methods in PVIIEEE Transactions on Nuclear Science, 1994
- Attenuation correction in PET using single photon transmission measurementMedical Physics, 1994
- Two new strategies to increase the signal to noise ratio in positron volume imagingIEEE Transactions on Nuclear Science, 1993
- The problem of scatter correction in positron volume imagingIEEE Transactions on Medical Imaging, 1993
- A deconvolution scatter correction for a 3-D PET systemIEEE Transactions on Medical Imaging, 1992
- Cross-plane scattering correction-point source deconvolution in PETIEEE Transactions on Medical Imaging, 1991
- An investigation of scatter in attenuation correction for PETIEEE Transactions on Nuclear Science, 1989
- Transmission Scanning: A Useful Adjunct to Conventional Emission Scanning for Accurately Keying Isotope Deposition to Radiographic AnatomyRadiology, 1966