Literature DB >> 8441045

A new graphic plot analysis for cerebral blood flow and partition coefficient with iodine-123-iodoamphetamine and dynamic SPECT validation studies using oxygen-15-water and PET.

T Yokoi1, H Iida, H Itoh, I Kanno.   

Abstract

To estimate regional cerebral blood flow (rCBF) and brain-blood partition coefficient (lambda) using a dynamic measurement, a new graphic plot analysis is proposed. By assuming a two-compartment model for tracer kinetics, we derived the linear relationship as Y(t) = K1 - k2 X(t), where Y(t) is the ratio of brain tissue activity-to-time-integrated arterial blood activity and X(t) is the ratio of time-integrated brain tissue activity-to-time-integrated arterial blood activity. A plot of Y(t) against X(t) yields a straight line and the y- and x-intercept of the regression line represent rCBF (K1) and lambda, respectively. The slope is a washout constant (-k2). This method was applied to 14 subjects with N-isopropyl-p-iodine-123 iodoamphetamine ([123I]IMP). The mean values of K1 and lambda for normal subjects were 41.3 +/- 6.7 ml/100 g/min and 29.6 +/- 6.5 ml/g, respectively, in the gray matter. A comparative study with positron emission tomography (PET) using an H2(15)O autoradiographic method revealed good correlation between IMP K1 and PET rCBF [r = 0.822; K1 = 0.842 rCBF + 0.030 (ml/g/min)]. The values of K1 using the graphical method were in excellent agreement with those using a nonlinear least-squares fitting technique (r = 0.992 for K1; r = 0.941 for lambda). The estimated K1 values in the graphical method were not changed when scanning times were varied. We conclude that a two-compartment model is acceptable for IMP kinetics within a scan time of 60 min. The graphical method gives a reliable and rapid estimation of rCBF when applied to dynamic data.

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Year:  1993        PMID: 8441045

Source DB:  PubMed          Journal:  J Nucl Med        ISSN: 0161-5505            Impact factor:   10.057


  11 in total

1.  Fully parametric imaging with reversible tracer 18F-FLT within a reasonable time.

Authors:  Nobuyuki Kudomi; Yukito Maeda; Tetsuhiro Hatakeyama; Yuka Yamamoto; Yoshihiro Nishiyama
Journal:  Radiol Phys Technol       Date:  2016-07-05

Review 2.  Recent advances in parametric neuroreceptor mapping with dynamic PET: basic concepts and graphical analyses.

Authors:  Seongho Seo; Su Jin Kim; Dong Soo Lee; Jae Sung Lee
Journal:  Neurosci Bull       Date:  2014-09-28       Impact factor: 5.203

3.  Error analysis of autoradiography method for measurement of cerebral blood flow by 123I-IMP brain SPECT: a comparison study with table look-up method and microsphere model method.

Authors:  H Ito; K Ishii; H Atsumi; Y Inukai; S Abe; M Sato; T Kinoshita; R Kawashima; S Ono; H Fukuda
Journal:  Ann Nucl Med       Date:  1995-11       Impact factor: 2.668

4.  Preclinical in vivo and in vitro comparison of the translocator protein PET ligands [18F]PBR102 and [18F]PBR111.

Authors:  S Eberl; A Katsifis; M A Peyronneau; L Wen; D Henderson; C Loc'h; I Greguric; J Verschuer; T Pham; P Lam; F Mattner; A Mohamed; M J Fulham
Journal:  Eur J Nucl Med Mol Imaging       Date:  2016-10-04       Impact factor: 9.236

5.  Quantifying regional cerebral blood flow with N-isopropyl-p[123I]iodoamphetamine by ring-type single-photon emission computed tomography: validity of a method to estimate early reference value by means of regional brain time-activity curve.

Authors:  N Takahashi
Journal:  Ann Nucl Med       Date:  1994-11       Impact factor: 2.668

6.  Validation of the dual-table autoradiographic method to quantify two sequential rCBFs in a single SPET session with N-isopropyl-[123I] p-iodoamphetamine.

Authors:  Sadahiko Nishizawa; Hidehiro Iida; Tatsuro Tsuchida; Harumi Ito; Junji Konishi; Yoshiharu Yonekura
Journal:  Eur J Nucl Med Mol Imaging       Date:  2003-05-07       Impact factor: 9.236

7.  Multiple linear analysis methods for the quantification of irreversibly binding radiotracers.

Authors:  Su Jin Kim; Jae Sung Lee; Yu Kyeong Kim; James Frost; Gary Wand; Mary E McCaul; Dong Soo Lee
Journal:  J Cereb Blood Flow Metab       Date:  2008-07-16       Impact factor: 6.200

8.  A method to quantitate cerebral blood flow using a rotating gamma camera and iodine-123 iodoamphetamine with one blood sampling.

Authors:  H Iida; H Itoh; P M Bloomfield; M Munaka; S Higano; M Murakami; A Inugami; S Eberl; Y Aizawa; I Kanno
Journal:  Eur J Nucl Med       Date:  1994-10

9.  Error analysis of table look-up method for cerebral blood flow measurement by 123I-IMP brain SPECT: comparison with conventional microsphere model method.

Authors:  H Ito; K Ishii; H Atsumi; T Kinoshita; R Kawashima; S Ono; S Yoshioka; H Iida; K Uemura; H Fukuda
Journal:  Ann Nucl Med       Date:  1995-05       Impact factor: 2.668

10.  A Simple Non-invasive I-123-IMP Autoradiography Method Developed by Modifying the Simple Non-invasive I-123-IMP Microsphere Method.

Authors:  Asato Ofuji; Rieko Nagaoka; Kosuke Yamashita; Akihiro Takaki; Shigeki Ito
Journal:  Asia Ocean J Nucl Med Biol       Date:  2018
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