DocumentCode
1295523
Title
Positron emission tomography of large rock samples using a multiring PET instrument
Author
Maguire, R.P. ; Missimer, J.H. ; Emert, F. ; Townsend, D.W. ; Dollinger, H. ; Leenders, K.L.
Author_Institution
Paul Scherrer Inst., Villigen, Switzerland
Volume
44
Issue
1
fYear
1997
fDate
2/1/1997 12:00:00 AM
Firstpage
26
Lastpage
30
Abstract
The technique of positron emission tomography (PET) is well established in the field of medical imaging. Non-medical applications have also been shown to be valuable in the measurement of dynamic chemical processes, specifically in the determination of the characteristics of small rock samples. Since rock is more dense than tissue, the problems of attenuation and scatter are accentuated. However, we are able to show that measurement of porosity in a large rock sample (21.5 cm diameter) is indeed practicable using three-dimensional (3-D) acquisition techniques. Due to multiple scattering of the photons in the rock and the cylindrical symmetry of the experiment, we measured a scatter distribution which is approximately homogeneous, allowing a correction for scattered radiation with a simple method. The problems of determining attenuation coefficients and applying a scatter correction makes absolute quantisation difficult. However, relative changers in porosity within the sample can be measured with a spatial resolution not appreciably different from that in water
Keywords
positron emission tomography; radioactive waste disposal; 3D acquisition techniques; PET; attenuation; attenuation coefficients; cylindrical symmetry; dynamic chemical processes; large rock samples; medical imaging; multiring PET instrument; nonmedical applications; photons; porosity; positron emission tomography; radioactive waste disposal site; scatter; scatter correction; scatter distribution; scattered radiation; spatial resolution; water; Attenuation; Biomedical imaging; Chemical processes; Instruments; Particle scattering; Pollution measurement; Positron emission tomography; Radioactive pollution; Spatial resolution; Water pollution;
fLanguage
English
Journal_Title
Nuclear Science, IEEE Transactions on
Publisher
ieee
ISSN
0018-9499
Type
jour
DOI
10.1109/23.554819
Filename
554819
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