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Research ArticleBasic Science Investigation

Attenuation Compensation in 99mTc SPECT Brain Imaging: A Comparison of the Use of Attenuation Maps Derived from Transmission Versus Emission Data in Normal Scans

Robert Licho, Stephen J. Glick, Weishi Xia, Tin-Su Pan, Bill C. Penney and Michael A. King
Journal of Nuclear Medicine March 1999, 40 (3) 456-463;
Robert Licho
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Stephen J. Glick
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Weishi Xia
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Tin-Su Pan
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Bill C. Penney
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Michael A. King
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Journal of Nuclear Medicine
Vol. 40, Issue 3
March 1, 1999
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Attenuation Compensation in 99mTc SPECT Brain Imaging: A Comparison of the Use of Attenuation Maps Derived from Transmission Versus Emission Data in Normal Scans
Robert Licho, Stephen J. Glick, Weishi Xia, Tin-Su Pan, Bill C. Penney, Michael A. King
Journal of Nuclear Medicine Mar 1999, 40 (3) 456-463;

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Attenuation Compensation in 99mTc SPECT Brain Imaging: A Comparison of the Use of Attenuation Maps Derived from Transmission Versus Emission Data in Normal Scans
Robert Licho, Stephen J. Glick, Weishi Xia, Tin-Su Pan, Bill C. Penney, Michael A. King
Journal of Nuclear Medicine Mar 1999, 40 (3) 456-463;
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  • Optimization of the Attenuation Coefficient for Chang Attenuation Correction in 123I Brain Perfusion SPECT
  • Influence of a Headrest on Reconstruction and Attenuation Correction of Human Brain SPECT Images
  • Quantitative SPECT Leads to Improved Performance in Discrimination Tasks Related to Prodromal Alzheimer's Disease
  • Contribution of Scatter and Attenuation Compensation to SPECT Images of Nonuniformly Distributed Brain Activities
  • Determination of the Attenuation Map in Emission Tomography
  • Nonuniform Transmission in Brain SPECT Using 201Tl, 153Gd, and 99mTc Static Line Sources: Anthropomorphic Dosimetry Studies and Influence on Brain Quantification
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