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Research ArticleNuclear Neurology

Effects of Scatter and Attenuation Correction on Quantitative Assessment of Regional Cerebral Blood Flow with SPECT

Hidehiro Iida, Yuichiro Narita, Hirotsugu Kado, Akemi Kashikura, Shigeki Sugawara, Yasuaki Shoji, Toshibumi Kinoshita, Toshihide Ogawa and Stefan Eberl
Journal of Nuclear Medicine January 1998, 39 (1) 181-189;
Hidehiro Iida
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Yuichiro Narita
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Hirotsugu Kado
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Akemi Kashikura
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Shigeki Sugawara
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Yasuaki Shoji
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Toshibumi Kinoshita
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Toshihide Ogawa
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Stefan Eberl
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Article Information

vol. 39 no. 1 181-189
PubMed 
9443759

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

Copyright & Usage 
COPYRIGHT© 1998 by the Society of Nuclear Medicine, Inc.

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Journal of Nuclear Medicine
Vol. 39, Issue 1
January 1, 1998
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Effects of Scatter and Attenuation Correction on Quantitative Assessment of Regional Cerebral Blood Flow with SPECT
Hidehiro Iida, Yuichiro Narita, Hirotsugu Kado, Akemi Kashikura, Shigeki Sugawara, Yasuaki Shoji, Toshibumi Kinoshita, Toshihide Ogawa, Stefan Eberl
Journal of Nuclear Medicine Jan 1998, 39 (1) 181-189;

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Effects of Scatter and Attenuation Correction on Quantitative Assessment of Regional Cerebral Blood Flow with SPECT
Hidehiro Iida, Yuichiro Narita, Hirotsugu Kado, Akemi Kashikura, Shigeki Sugawara, Yasuaki Shoji, Toshibumi Kinoshita, Toshihide Ogawa, Stefan Eberl
Journal of Nuclear Medicine Jan 1998, 39 (1) 181-189;
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  • Optimization of the Attenuation Coefficient for Chang Attenuation Correction in 123I Brain Perfusion SPECT
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  • An Evidence-Based Review of Quantitative SPECT Imaging and Potential Clinical Applications
  • Multicenter Evaluation of a Standardized Protocol for Rest and Acetazolamide Cerebral Blood Flow Assessment Using a Quantitative SPECT Reconstruction Program and Split-Dose 123I-Iodoamphetamine
  • Comparison of Methods of Attenuation and Scatter Correction in Brain Perfusion SPECT
  • Quantitative SPECT Leads to Improved Performance in Discrimination Tasks Related to Prodromal Alzheimer's Disease
  • Evaluation of 2 Scatter Correction Methods Using a Striatal Phantom for Quantitative Brain SPECT
  • Contribution of Scatter and Attenuation Compensation to SPECT Images of Nonuniformly Distributed Brain Activities
  • 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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