Literature DB >> 19709971

Kinetic quantitation of cerebral PET-FDG studies without concurrent blood sampling: statistical recovery of the arterial input function.

F O'Sullivan1, J Kirrane, M Muzi, J N O'Sullivan, A M Spence, D A Mankoff, K A Krohn.   

Abstract

Kinetic quantitation of dynamic positron emission tomography (PET) studies via compartmental modeling usually requires the time-course of the radio-tracer concentration in the arterial blood as an arterial input function (AIF). For human and animal imaging applications, significant practical difficulties are associated with direct arterial sampling and as a result there is substantial interest in alternative methods that require no blood sampling at the time of the study. A fixed population template input function derived from prior experience with directly sampled arterial curves is one possibility. Image-based extraction, including requisite adjustment for spillover and recovery, is another approach. The present work considers a hybrid statistical approach based on a penalty formulation in which the information derived from a priori studies is combined in a Bayesian manner with information contained in the sampled image data in order to obtain an input function estimate. The absolute scaling of the input is achieved by an empirical calibration equation involving the injected dose together with the subject's weight, height and gender. The technique is illustrated in the context of (18)F -Fluorodeoxyglucose (FDG) PET studies in humans. A collection of 79 arterially sampled FDG blood curves are used as a basis for a priori characterization of input function variability, including scaling characteristics. Data from a series of 12 dynamic cerebral FDG PET studies in normal subjects are used to evaluate the performance of the penalty-based AIF estimation technique. The focus of evaluations is on quantitation of FDG kinetics over a set of 10 regional brain structures. As well as the new method, a fixed population template AIF and a direct AIF estimate based on segmentation are also considered. Kinetics analyses resulting from these three AIFs are compared with those resulting from radially sampled AIFs. The proposed penalty-based AIF extraction method is found to achieve significant improvements over the fixed template and the segmentation methods. As well as achieving acceptable kinetic parameter accuracy, the quality of fit of the region of interest (ROI) time-course data based on the extracted AIF, matches results based on arterially sampled AIFs. In comparison, significant deviation in the estimation of FDG flux and degradation in ROI data fit are found with the template and segmentation methods. The proposed AIF extraction method is recommended for practical use.

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Year:  2009        PMID: 19709971      PMCID: PMC4154632          DOI: 10.1109/TMI.2009.2029096

Source DB:  PubMed          Journal:  IEEE Trans Med Imaging        ISSN: 0278-0062            Impact factor:   10.048


  37 in total

1.  Follow-up of radial arterial catheterization for positron emission tomography studies.

Authors:  P H Jons; M Ernst; J Hankerson; K Hardy; A J Zametkin
Journal:  Hum Brain Mapp       Date:  1997       Impact factor: 5.038

2.  Cluster analysis in kinetic modelling of the brain: a noninvasive alternative to arterial sampling.

Authors:  Matthew Liptrot; Karen H Adams; Lars Martiny; Lars H Pinborg; Markus N Lonsdale; Niels V Olsen; Søren Holm; Claus Svarer; Gitte M Knudsen
Journal:  Neuroimage       Date:  2004-02       Impact factor: 6.556

3.  Comparison of image-derived and arterial input functions for estimating the rate of glucose metabolism in therapy-monitoring 18F-FDG PET studies.

Authors:  Lioe-Fee de Geus-Oei; Eric P Visser; Paul F M Krabbe; Bas A van Hoorn; Emile B Koenders; Antoon T Willemsen; Jan Pruim; Frans H M Corstens; Wim J G Oyen
Journal:  J Nucl Med       Date:  2006-06       Impact factor: 10.057

4.  The application of maximum likelihood factor analysis (MLFA) with uniqueness constraints on dynamic cardiac microPET data.

Authors:  Yi Su; Michael J Welch; Kooresh I Shoghi
Journal:  Phys Med Biol       Date:  2007-04-02       Impact factor: 3.609

5.  Quantification method in [18F]fluorodeoxyglucose brain positron emission tomography using independent component analysis.

Authors:  Kuan-Hao Su; Liang-Chih Wu; Ren-Shian Liu; Shih-Jen Wang; Jyh-Cheng Chen
Journal:  Nucl Med Commun       Date:  2005-11       Impact factor: 1.690

6.  A computer simulation study on the effects of input function measurement noise in tracer kinetic modeling with positron emission tomography (PET).

Authors:  D Feng; X Wang
Journal:  Comput Biol Med       Date:  1993-01       Impact factor: 4.589

7.  Factor analysis for extraction of blood time-activity curves in dynamic FDG-PET studies.

Authors:  H M Wu; C K Hoh; Y Choi; H R Schelbert; R A Hawkins; M E Phelps; S C Huang
Journal:  J Nucl Med       Date:  1995-09       Impact factor: 10.057

8.  A new fast algorithm for the evaluation of regions of interest and statistical uncertainty in computed tomography.

Authors:  R H Huesman
Journal:  Phys Med Biol       Date:  1984-05       Impact factor: 3.609

9.  Use of ridge regression for improved estimation of kinetic constants from PET data.

Authors:  F O'Sullivan; A Saha
Journal:  IEEE Trans Med Imaging       Date:  1999-02       Impact factor: 10.048

10.  Noninvasive quantitative fluorodeoxyglucose PET studies with an estimated input function derived from a population-based arterial blood curve.

Authors:  S Takikawa; V Dhawan; P Spetsieris; W Robeson; T Chaly; R Dahl; D Margouleff; D Eidelberg
Journal:  Radiology       Date:  1993-07       Impact factor: 11.105

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  11 in total

1.  A virtual clinical trial comparing static versus dynamic PET imaging in measuring response to breast cancer therapy.

Authors:  Kristen A Wangerin; Mark Muzi; Lanell M Peterson; Hannah M Linden; Alena Novakova; David A Mankoff; Paul E Kinahan
Journal:  Phys Med Biol       Date:  2017-02-13       Impact factor: 3.609

Review 2.  Quantitative assessment of dynamic PET imaging data in cancer imaging.

Authors:  Mark Muzi; Finbarr O'Sullivan; David A Mankoff; Robert K Doot; Larry A Pierce; Brenda F Kurland; Hannah M Linden; Paul E Kinahan
Journal:  Magn Reson Imaging       Date:  2012-07-21       Impact factor: 2.546

3.  An analysis of whole body tracer kinetics in dynamic PET studies with application to image-based blood input function extraction.

Authors:  Jian Huang; Finbarr O'Sullivan
Journal:  IEEE Trans Med Imaging       Date:  2014-05       Impact factor: 10.048

4.  Patient-Specific Method of Generating Parametric Maps of Patlak K(i) without Blood Sampling or Metabolite Correction: A Feasibility Study.

Authors:  George A Sayre; Benjamin L Franc; Youngho Seo
Journal:  Int J Mol Imaging       Date:  2011-09-07

5.  Activity of P-Glycoprotein, a β-Amyloid Transporter at the Blood-Brain Barrier, Is Compromised in Patients with Mild Alzheimer Disease.

Authors:  Anand K Deo; Soo Borson; Jeanne M Link; Karen Domino; Janet F Eary; Ban Ke; Todd L Richards; David A Mankoff; Satoshi Minoshima; Finbarr O'Sullivan; Sara Eyal; Peng Hsiao; Ken Maravilla; Jashvant D Unadkat
Journal:  J Nucl Med       Date:  2014-05-19       Impact factor: 11.082

6.  The extent to which standardized uptake values reflect FDG phosphorylation in the liver and spleen as functions of time after injection of 18F-fluorodeoxyglucose.

Authors:  Georgia Keramida; Constantinos D Anagnostopoulos; A Michael Peters
Journal:  EJNMMI Res       Date:  2017-02-07       Impact factor: 3.138

7.  Assessment of muscle function using hybrid PET/MRI: comparison of 18F-FDG PET and T2-weighted MRI for quantifying muscle activation in human subjects.

Authors:  Bryan Haddock; Søren Holm; Jákup M Poulsen; Lotte H Enevoldsen; Henrik B W Larsson; Andreas Kjær; Charlotte Suetta
Journal:  Eur J Nucl Med Mol Imaging       Date:  2016-09-08       Impact factor: 9.236

8.  Assessment of a statistical AIF extraction method for dynamic PET studies with 15O water and 18F fluorodeoxyglucose in locally advanced breast cancer patients.

Authors:  Finbarr O'Sullivan; Janet N O'Sullivan; Jian Huang; Robert Doot; Mark Muzi; Erin Schubert; Lanell Peterson; Lisa K Dunnwald; David M Mankoff
Journal:  J Med Imaging (Bellingham)       Date:  2017-11-23

9.  Effect of 18F-FDG uptake time on lesion detectability in PET imaging of early stage breast cancer.

Authors:  Kristen A Wangerin; Mark Muzi; Lanell M Peterson; Hannah M Linden; Alena Novakova; Finbarr O'Sullivan; Brenda F Kurland; David A Mankoff; Paul E Kinahan
Journal:  Tomography       Date:  2015-09

10.  Impact of Global Mean Normalization on Regional Glucose Metabolism in the Human Brain.

Authors:  Kristian N Mortensen; Albert Gjedde; Garth J Thompson; Peter Herman; Maxime J Parent; Douglas L Rothman; Ron Kupers; Maurice Ptito; Johan Stender; Steven Laureys; Valentin Riedl; Michael T Alkire; Fahmeed Hyder
Journal:  Neural Plast       Date:  2018-06-12       Impact factor: 3.599

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