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Research ArticleBRAIN

Quantitative Cerebral Blood Flow Measurement with Dynamic Perfusion CT Using the Vascular-Pixel Elimination Method: Comparison with H215O Positron Emission Tomography

Kohsuke Kudo, Satoshi Terae, Chietsugu Katoh, Masaki Oka, Tohru Shiga, Nagara Tamaki and Kazuo Miyasaka
American Journal of Neuroradiology March 2003, 24 (3) 419-426;
Kohsuke Kudo
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Satoshi Terae
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Chietsugu Katoh
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Masaki Oka
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Tohru Shiga
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Nagara Tamaki
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Kazuo Miyasaka
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Article Information

vol. 24 no. 3 419-426
PubMed 
12637292

Published By 
American Journal of Neuroradiology
Print ISSN 
0195-6108
Online ISSN 
1936-959X
History 
  • Received July 3, 2002
  • Accepted after revision August 27, 2002
  • Published online March 1, 2003.

Copyright & Usage 
Copyright © American Society of Neuroradiology

Author Information

  1. Kohsuke Kudoa,
  2. Satoshi Teraea,
  3. Chietsugu Katohb,
  4. Masaki Okaa,
  5. Tohru Shigac,
  6. Nagara Tamakic and
  7. Kazuo Miyasakaa
  1. aDepartment of Radiology, Hokkaido University Graduate School of Medicine, Sapporo, Japan
  2. bDepartment of Tracer Kinetics, Hokkaido University Graduate School of Medicine, Sapporo, Japan
  3. cDepartment of Nuclear Medicine, Hokkaido University Graduate School of Medicine, Sapporo, Japan
  1. Address reprint requets to Kohsuke Kudo, Hokkaido University Graduate School of Medicine, Department of Radiology, N 15, W 7, Kita-ku, Sapporo, Japan, 060-8638
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American Journal of Neuroradiology: 24 (3)
American Journal of Neuroradiology
Vol. 24, Issue 3
1 Mar 2003
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Cite this article
Kohsuke Kudo, Satoshi Terae, Chietsugu Katoh, Masaki Oka, Tohru Shiga, Nagara Tamaki, Kazuo Miyasaka
Quantitative Cerebral Blood Flow Measurement with Dynamic Perfusion CT Using the Vascular-Pixel Elimination Method: Comparison with H215O Positron Emission Tomography
American Journal of Neuroradiology Mar 2003, 24 (3) 419-426;

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Quantitative Cerebral Blood Flow Measurement with Dynamic Perfusion CT Using the Vascular-Pixel Elimination Method: Comparison with H215O Positron Emission Tomography
Kohsuke Kudo, Satoshi Terae, Chietsugu Katoh, Masaki Oka, Tohru Shiga, Nagara Tamaki, Kazuo Miyasaka
American Journal of Neuroradiology Mar 2003, 24 (3) 419-426;
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  • Comparison of Perfusion CT Software to Predict the Final Infarct Volume After Thrombectomy
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  • Imaging Evidence and Recommendations for Traumatic Brain Injury: Advanced Neuro- and Neurovascular Imaging Techniques
  • Early Rate of Contrast Extravasation in Patients with Intracerebral Hemorrhage
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  • Avoiding "Pseudo-Reversibility" of CT-CBV Infarct Core Lesions in Acute Stroke Patients After Thrombolytic Therapy: The Need for Algorithmically "Delay-Corrected" CT Perfusion Map Postprocessing Software
  • Theoretic Basis and Technical Implementations of CT Perfusion in Acute Ischemic Stroke, Part 2: Technical Implementations
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  • Tracer Delay-Insensitive Algorithm Can Improve Reliability of CT Perfusion Imaging for Cerebrovascular Steno-Occlusive Disease: Comparison with Quantitative Single-Photon Emission CT
  • Identification of the penumbra and infarct core on hyperacute noncontrast and perfusion CT
  • Identification of Penumbra and Infarct in Acute Ischemic Stroke Using Computed Tomography Perfusion-Derived Blood Flow and Blood Volume Measurements
  • Visual evaluation of perfusion computed tomography in acute stroke accurately estimates infarct volume and tissue viability
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