Literature DB >> 20508323

The impact of 3D volume of interest definition on accuracy and precision of activity estimation in quantitative SPECT and planar processing methods.

Bin He1, Eric C Frey.   

Abstract

Accurate and precise estimation of organ activities is essential for treatment planning in targeted radionuclide therapy. We have previously evaluated the impact of processing methodology, statistical noise and variability in activity distribution and anatomy on the accuracy and precision of organ activity estimates obtained with quantitative SPECT (QSPECT) and planar (QPlanar) processing. Another important factor impacting the accuracy and precision of organ activity estimates is accuracy of and variability in the definition of organ regions of interest (ROI) or volumes of interest (VOI). The goal of this work was thus to systematically study the effects of VOI definition on the reliability of activity estimates. To this end, we performed Monte Carlo simulation studies using randomly perturbed and shifted VOIs to assess the impact on organ activity estimates. The 3D NCAT phantom was used with activities that modeled clinically observed (111)In ibritumomab tiuxetan distributions. In order to study the errors resulting from misdefinitions due to manual segmentation errors, VOIs of the liver and left kidney were first manually defined. Each control point was then randomly perturbed to one of the nearest or next-nearest voxels in three ways: with no, inward or outward directional bias, resulting in random perturbation, erosion or dilation, respectively, of the VOIs. In order to study the errors resulting from the misregistration of VOIs, as would happen, e.g. in the case where the VOIs were defined using a misregistered anatomical image, the reconstructed SPECT images or projections were shifted by amounts ranging from -1 to 1 voxels in increments of with 0.1 voxels in both the transaxial and axial directions. The activity estimates from the shifted reconstructions or projections were compared to those from the originals, and average errors were computed for the QSPECT and QPlanar methods, respectively. For misregistration, errors in organ activity estimations were linear in the shift for both the QSPECT and QPlanar methods. QPlanar was less sensitive to object definition perturbations than QSPECT, especially for dilation and erosion cases. Up to 1 voxel misregistration or misdefinition resulted in up to 8% error in organ activity estimates, with the largest errors for small or low uptake organs. Both types of VOI definition errors produced larger errors in activity estimates for a small and low uptake organs (i.e. -7.5% to 5.3% for the left kidney) than for a large and high uptake organ (i.e. -2.9% to 2.1% for the liver). We observed that misregistration generally had larger effects than misdefinition, with errors ranging from -7.2% to 8.4%. The different imaging methods evaluated responded differently to the errors from misregistration and misdefinition. We found that QSPECT was more sensitive to misdefinition errors, but less sensitive to misregistration errors, as compared to the QPlanar method. Thus, sensitivity to VOI definition errors should be an important criterion in evaluating quantitative imaging methods.

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Year:  2010        PMID: 20508323      PMCID: PMC2992950          DOI: 10.1088/0031-9155/55/12/017

Source DB:  PubMed          Journal:  Phys Med Biol        ISSN: 0031-9155            Impact factor:   3.609


  17 in total

1.  Fast modelling of the collimator-detector response in Monte Carlo simulation of SPECT imaging using the angular response function.

Authors:  X Song; W P Segars; Y Du; B M W Tsui; E C Frey
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2.  Comparison of conventional, model-based quantitative planar, and quantitative SPECT image processing methods for organ activity estimation using In-111 agents.

Authors:  Bin He; Eric C Frey
Journal:  Phys Med Biol       Date:  2006-08-02       Impact factor: 3.609

3.  Segmentation of PET volumes by iterative image thresholding.

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5.  In vivo quantitation of lesion radioactivity using external counting methods.

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9.  Volume reduction versus radiation dose for tumors in previously untreated lymphoma patients who received iodine-131 tositumomab therapy. Conjugate views compared with a hybrid method.

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Journal:  Cancer       Date:  2002-02-15       Impact factor: 6.860

10.  18F-FDG PET definition of gross tumor volume for radiotherapy of non-small cell lung cancer: is a single standardized uptake value threshold approach appropriate?

Authors:  Kenneth J Biehl; Feng-Ming Kong; Farrokh Dehdashti; Jian-Yue Jin; Sasa Mutic; Issam El Naqa; Barry A Siegel; Jeffrey D Bradley
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  12 in total

1.  EQPlanar: a maximum-likelihood method for accurate organ activity estimation from whole body planar projections.

Authors:  N Song; B He; R L Wahl; E C Frey
Journal:  Phys Med Biol       Date:  2011-08-03       Impact factor: 3.609

2.  MIRD pamphlet No. 23: quantitative SPECT for patient-specific 3-dimensional dosimetry in internal radionuclide therapy.

Authors:  Yuni K Dewaraja; Eric C Frey; George Sgouros; A Bertrand Brill; Peter Roberson; Pat B Zanzonico; Michael Ljungberg
Journal:  J Nucl Med       Date:  2012-06-28       Impact factor: 10.057

3.  Fisher information analysis of list-mode SPECT emission data for joint estimation of activity and attenuation distribution.

Authors:  Ashequr Rahman; Yansong Zhu; Eric Clarkson; Matthew A Kupinski; Eric C Frey; Abhinav K Jha
Journal:  Inverse Probl       Date:  2020-08-20       Impact factor: 2.407

4.  Development and evaluation of convergent and accelerated penalized SPECT image reconstruction methods for improved dose-volume histogram estimation in radiopharmaceutical therapy.

Authors:  Lishui Cheng; Robert F Hobbs; George Sgouros; Eric C Frey
Journal:  Med Phys       Date:  2014-11       Impact factor: 4.071

5.  VIDA: a voxel-based dosimetry method for targeted radionuclide therapy using Geant4.

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Journal:  Cancer Biother Radiopharm       Date:  2015-01-16       Impact factor: 3.099

6.  Simplifying volumes-of-interest (VOIs) definition in quantitative SPECT: Beyond manual definition of 3D whole-organ VOIs.

Authors:  Esther M Vicente; Martin A Lodge; Steven P Rowe; Richard L Wahl; Eric C Frey
Journal:  Med Phys       Date:  2017-03-28       Impact factor: 4.071

7.  The effect of volume-of-interest misregistration on quantitative planar activity and dose estimation.

Authors:  N Song; B He; E C Frey
Journal:  Phys Med Biol       Date:  2010-08-27       Impact factor: 3.609

Review 8.  Imaging and dosimetry for alpha-particle emitter radiopharmaceutical therapy: improving radiopharmaceutical therapy by looking into the black box.

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9.  MIRD pamphlet No. 24: Guidelines for quantitative 131I SPECT in dosimetry applications.

Authors:  Yuni K Dewaraja; Michael Ljungberg; Alan J Green; Pat B Zanzonico; Eric C Frey; Wesley E Bolch; A Bertrand Brill; Mark Dunphy; Darrell R Fisher; Roger W Howell; Ruby F Meredith; George Sgouros; Barry W Wessels
Journal:  J Nucl Med       Date:  2013-10-15       Impact factor: 10.057

Review 10.  The effect of intra-arterial angiotensin II on the hepatic tumor to non-tumor blood flow ratio for radioembolization: a systematic review.

Authors:  Andor F van den Hoven; Maarten L J Smits; Charlotte E N M Rosenbaum; Helena M Verkooijen; Maurice A A J van den Bosch; Marnix G E H Lam
Journal:  PLoS One       Date:  2014-01-17       Impact factor: 3.240

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