Literature DB >> 12945976

Reducing uncertainties in volumetric image based deformable organ registration.

J Liang1, D Yan.   

Abstract

Applying volumetric image feedback in radiotherapy requires image based deformable organ registration. The foundation of this registration is the ability of tracking subvolume displacement in organs of interest. Subvolume displacement can be calculated by applying biomechanics model and the finite element method to human organs manifested on the multiple volumetric images. The calculation accuracy, however, is highly dependent on the determination of the corresponding organ boundary points. Lacking sufficient information for such determination, uncertainties are inevitable-thus diminishing the registration accuracy. In this paper, a method of consuming energy minimization was developed to reduce these uncertainties. Starting from an initial selection of organ boundary point correspondence on volumetric image sets, the subvolume displacement and stress distribution of the whole organ are calculated and the consumed energy due to the subvolume displacements is computed accordingly. The corresponding positions of the initially selected boundary points are then iteratively optimized to minimize the consuming energy under geometry and stress constraints. In this study, a rectal wall delineated from patient CT image was artificially deformed using a computer simulation and utilized to test the optimization. Subvolume displacements calculated based on the optimized boundary point correspondence were compared to the true displacements, and the calculation accuracy was thereby evaluated. Results demonstrate that a significant improvement on the accuracy of the deformable organ registration can be achieved by applying the consuming energy minimization in the organ deformation calculation.

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Year:  2003        PMID: 12945976     DOI: 10.1118/1.1587631

Source DB:  PubMed          Journal:  Med Phys        ISSN: 0094-2405            Impact factor:   4.071


  7 in total

1.  Evaluations of an adaptive planning technique incorporating dose feedback in image-guided radiotherapy of prostate cancer.

Authors:  Han Liu; Qiuwen Wu
Journal:  Med Phys       Date:  2011-12       Impact factor: 4.071

2.  Image registration for targeted MRI-guided transperineal prostate biopsy.

Authors:  Andriy Fedorov; Kemal Tuncali; Fiona M Fennessy; Junichi Tokuda; Nobuhiko Hata; William M Wells; Ron Kikinis; Clare M Tempany
Journal:  J Magn Reson Imaging       Date:  2012-05-29       Impact factor: 4.813

3.  Measurement of mechanical properties of rectal wall.

Authors:  Y Qiao; E Pan; S S Chakravarthula; F Han; J Liang; S Gudlavalleti
Journal:  J Mater Sci Mater Med       Date:  2005-02       Impact factor: 3.896

4.  Biokinetics of Radiolabeled Monoclonal Antibody BC8: Differences in Biodistribution and Dosimetry Among Hematologic Malignancies.

Authors:  Manuela Matesan; Darrell R Fisher; Roger Wong; Ajay K Gopal; Damian J Green; Brenda M Sandmaier; William Bensinger; John M Pagel; Johnnie Orozco; Oliver W Press; Ryan D Cassaday; Eric Hutchinson; Michelle Wanner; Sujit Pal; Carolyn Thostenson; Joseph G Rajendran
Journal:  J Nucl Med       Date:  2020-03-13       Impact factor: 10.057

5.  Deformable medical image registration of pleural cavity for photodynamic therapy by using finite-element based method.

Authors:  Rozhin Penjweini; Michele M Kim; Andrea Dimofte; Jarod C Finlay; Timothy C Zhu
Journal:  Proc SPIE Int Soc Opt Eng       Date:  2016-03-07

6.  Three-dimensional finite-element based deformable image registration for evaluation of pleural cavity irradiation during photodynamic therapy.

Authors:  Rozhin Penjweini; Michele M Kim; Timothy C Zhu
Journal:  Med Phys       Date:  2017-05-24       Impact factor: 4.071

7.  Feasibility and potential benefits of defining the internal gross tumor volume of hepatocellular carcinoma using contrast-enhanced 4D CT images obtained by deformable registration.

Authors:  Hua Xu; Guanzhong Gong; Hong Wei; Lusheng Chen; Jinhu Chen; Jie Lu; Tonghai Liu; Jian Zhu; Yong Yin
Journal:  Radiat Oncol       Date:  2014-10-16       Impact factor: 3.481

  7 in total

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