Accuracy of PET RCBF measurements: Effective of time shift between blood and brain radioactivity curves Journal Article


Authors: Dhawan, V.; Conti, J.; Mernyk, M.; Jarden, J. O.; Rottenberg, D. A.
Article Title: Accuracy of PET RCBF measurements: Effective of time shift between blood and brain radioactivity curves
Abstract: Analytic expressions were derived for estimating the error in PET RCBF measurements associated with the time lag between brain and blood radioactivity following bolus H215O injection and during non-steady-state CO15O inhalation. This lag time reflects the physiological difference in arrival times of 15O activity at brain and radial arterial sampling site as well as the experimentally introduced resistive to flow offered by the arterial catheter/stopcock assembly. Multiple measurements of this time lag ranged between 1 and 10 s. For non-steady-state CO15O PET measurements, estimated errors in RCBF ranged from 0.02 to 30% for delays of 2-8 s and scan lengths of 30-180 s. In the range 20-100 ml min-1 per 100 g, variations in RCBF only marginally affected these errors. Errors increased with longer delays but decreased sharply with scan durations greater than 60 s. For 30-180 s scans, even larger errors are associated with the H215O injection technique (peak blood activity at 10 s): 1-60% for delays of 2-8 s. A 'slow' bolus peaking at 20 s decreased the error by 40%. For the H215O method it is essential to estimate the time shift to within 2 s if accurate flow measurements (error less than 5%) are to be obtained from 40-60 s scans.
Keywords: unclassified drug; case report; positron emission tomography; methodology; oxygen; central nervous system; blood; brain; diagnosis; radioactivity; radioisotope; water; respiration; brain blood flow; carbon dioxide; computer analysis; carbon monoxide o 15; water o 15; humans; human; priority journal; article; oxygen radioisotopes; blood and hemopoietic system; peripheral vascular system
Journal Title: Physics in Medicine and Biology
Volume: 31
Issue: 5
ISSN: 0031-9155
Publisher: IOP Publishing Ltd  
Date Published: 1986-05-01
Start Page: 507
End Page: 514
Language: English
DOI: 10.1088/0031-9155/31/5/003
PUBMED: 3090571
PROVIDER: scopus
DOI/URL:
Notes: Article -- Export Date: 18 August 2021 -- Source: Scopus
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  1. Vijay Dhawan
    22 Dhawan