Bone equivalent liquid solution to assess accuracy of transmission measurements in SPECT and PET

Quantitation in emission tomography (PET and SPECT) assumes that several physical factors are corrected. Attenuation can be corrected using transmission tomography which can be performed on SPECT and PET devices. Quantitative comparison of the relative performances of transmission scans in SPECT and...

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Published in1996 IEEE Nuclear Science Symposium. Conference Record Vol. 2; pp. 1444 - 1447 vol.2
Main Authors De Dreuille, O., Strijckmans, V., Almeida, P., Loc'h, C., Bendriem, B.
Format Conference Proceeding
LanguageEnglish
Published IEEE 1996
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Abstract Quantitation in emission tomography (PET and SPECT) assumes that several physical factors are corrected. Attenuation can be corrected using transmission tomography which can be performed on SPECT and PET devices. Quantitative comparison of the relative performances of transmission scans in SPECT and PET has been investigated using a calibrated liquid solution with a linear attenuation coefficient (/spl mu/) nearly equivalent to that of skeleton cranium bone for radiation with an energy ranging from 50 to 600 keV.
AbstractList Quantitation in emission tomography (PET and SPECT) assumes that several physical factors are corrected. Attenuation can be corrected using transmission tomography which can be performed on SPECT and PET devices. Quantitative comparison of the relative performances of transmission scans in SPECT and PET has been investigated using a calibrated liquid solution with a linear attenuation coefficient (/spl mu/) nearly equivalent to that of skeleton cranium bone for radiation with an energy ranging from 50 to 600 keV.
Author Almeida, P.
De Dreuille, O.
Loc'h, C.
Strijckmans, V.
Bendriem, B.
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Snippet Quantitation in emission tomography (PET and SPECT) assumes that several physical factors are corrected. Attenuation can be corrected using transmission...
SourceID ieee
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StartPage 1444
SubjectTerms Attenuation measurement
Bones
Cameras
Cranium
Energy resolution
Filling
Head
Imaging phantoms
Positron emission tomography
Skeleton
Title Bone equivalent liquid solution to assess accuracy of transmission measurements in SPECT and PET
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