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Research ArticleMethodology

Accurate Attenuation Correction Despite Movement during PET Imaging

Jesper L.R. Andersson, Bengt E. Vagnhammar and Harald Schneider
Journal of Nuclear Medicine April 1995, 36 (4) 670-678;
Jesper L.R. Andersson
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Bengt E. Vagnhammar
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Harald Schneider
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Article Information

vol. 36 no. 4 670-678
PubMed 
7699463

Published By 
Society of Nuclear Medicine
Print ISSN 
0161-5505
Online ISSN 
2159-662X

Copyright & Usage 
COPYRIGHT© 1995 by the Society of Nuclear Medicine, Inc.

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Journal of Nuclear Medicine
Vol. 36, Issue 4
April 1, 1995
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Accurate Attenuation Correction Despite Movement during PET Imaging
Jesper L.R. Andersson, Bengt E. Vagnhammar, Harald Schneider
Journal of Nuclear Medicine Apr 1995, 36 (4) 670-678;

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Accurate Attenuation Correction Despite Movement during PET Imaging
Jesper L.R. Andersson, Bengt E. Vagnhammar, Harald Schneider
Journal of Nuclear Medicine Apr 1995, 36 (4) 670-678;
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  • Low-Dose Quantitative Myocardial Blood Flow Imaging Using 15O-Water and PET Without Attenuation Correction
  • Movement Correction Method for Human Brain PET Images: Application to Quantitative Analysis of Dynamic 18F-FDDNP Scans
  • Decreased GABA-A binding on FMZ-PET in succinic semialdehyde dehydrogenase deficiency
  • Correction of Head Movement on PET Studies: Comparison of Methods
  • Occurrence of an Artifact in Brain 18F-FDG PET with Calculated Attenuation Correction
  • About the mechanisms of auditory verbal hallucinations: a positron emission tomographic study
  • 18F-FDG PET Hemispheric Cerebral Hypometabolic Activity: Patient Motion Artifact.
  • Motion Artifact Reduction on Parametric PET Images of Neuroreceptor Binding
  • Long-Term Effects of "Ecstasy" Use on Serotonin Transporters of the Brain Investigated by PET
  • Determination of the Attenuation Map in Emission Tomography
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More in this TOC Section

  • No-Carrier-Added Iodine-131-FIBG: Evaluation of an MIBG Analog
  • Weighted Summation of Oxygen-15-Water PET Data to Increase Signal-to-Noise Ratio for Activation Studies
  • Implementation and Evaluation of Patient-Specific Three-Dimensional Internal Dosimetry
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