Literature DB >> 18196818

Automatic 3D-to-2D registration for CT and dual-energy digital radiography for calcification detection.

Xiang Chen1, Robert C Gilkeson, Baowei Fei.   

Abstract

We are investigating three-dimensional (3D) to two-dimensional (2D) registration methods for computed tomography (CT) and dual-energy digital radiography (DEDR). CT is an established tool for the detection of cardiac calcification. DEDR could be a cost-effective alternative screening tool. In order to utilize CT as the "gold standard" to evaluate the capability of DEDR images for the detection and localization of calcium, we developed an automatic, intensity-based 3D-to-2D registration method for 3D CT volumes and 2D DEDR images. To generate digitally reconstructed radiography (DRR) from the CT volumes, we developed several projection algorithms using the fast shear-warp method. In particular, we created a Gaussian-weighted projection for this application. We used normalized mutual information (NMI) as the similarity measurement. Simulated projection images from CT values were fused with the corresponding DEDR images to evaluate the localization of cardiac calcification. The registration method was evaluated by digital phantoms, physical phantoms, and clinical data sets. The results from the digital phantoms show that the success rate is 100% with a translation difference of less than 0.8 mm and a rotation difference of less than 0.2 degrees. For physical phantom images, the registration accuracy is 0.43 +/- 0.24 mm. Color overlay and 3D visualization of clinical images show that the two images registered well. The NMI values between the DRR and DEDR images improved from 0.21 +/- 0.03 before registration to 0.25 +/- 0.03 after registration. Registration errors measured from anatomic markers decreased from 27.6 +/- 13.6 mm before registration to 2.5 +/- 0.5 mm after registration. Our results show that the automatic 3D-to-2D registration is accurate and robust. This technique can provide a useful tool for correlating DEDR with CT images for screening coronary artery calcification.

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Year:  2007        PMID: 18196818      PMCID: PMC2743028          DOI: 10.1118/1.2805994

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


  19 in total

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Journal:  IEEE Trans Med Imaging       Date:  2003-04       Impact factor: 10.048

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Authors:  Robert A McLaughlin; John Hipwell; David J Hawkes; J Alison Noble; James V Byrne; Tim C Cox
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9.  Automatic registration of CT volumes and dual-energy digital radiography for detection of cardiac and lung diseases.

Authors:  Baowei Fei; Xiang Chen; Hesheng Wang; John M Sabol; Elena DuPont; Robert C Gilkeson
Journal:  Conf Proc IEEE Eng Med Biol Soc       Date:  2006

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Authors:  Brad H Thompson; William Stanford
Journal:  Int J Cardiovasc Imaging       Date:  2005-02       Impact factor: 2.357

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  9 in total

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Journal:  IEEE Trans Med Imaging       Date:  2011-11-18       Impact factor: 10.048

5.  Extracting Cardiac Myofiber Orientations from High Frequency Ultrasound Images.

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6.  Assessment of coronary artery calcium using dual-energy subtraction digital radiography.

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7.  3D multimodal cardiac data reconstruction using angiography and computerized tomographic angiography registration.

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8.  Influence of different isoflurane anesthesia protocols on murine cerebral hemodynamics measured with pseudo-continuous arterial spin labeling.

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9.  Detection of coronary calcifications with dual energy chest X-rays: clinical evaluation.

Authors:  Yingnan Song; Hao Wu; Di Wen; Bo Zhu; Philipp Graner; Leslie Ciancibello; Haran Rajeswaran; Karma Salem; Mehrdad Hajmomenian; Robert C Gilkeson; David L Wilson
Journal:  Int J Cardiovasc Imaging       Date:  2020-10-28       Impact factor: 2.357

  9 in total

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