Literature DB >> 21815391

Development and characterization of an anthropomorphic breast software phantom based upon region-growing algorithm.

Predrag R Bakic1, Cuiping Zhang, Andrew D A Maidment.   

Abstract

PURPOSE: We present a novel algorithm for computer simulation of breast anatomy for generation of anthropomorphic software breast phantoms. A realistic breast simulation is necessary for preclinical validation of volumetric imaging modalities.
METHODS: The anthropomorphic software breast phantom simulates the skin, regions of adipose and fibroglandular tissue, and the matrix of Cooper's ligaments and adipose compartments. The adipose compartments are simulated using a seeded region-growing algorithm; compartments are grown from a set of seed points with specific orientation and growing speed. The resulting adipose compartments vary in shape and size similar to real breasts; the adipose region has a compact coverage by adipose compartments of various sizes, while the fibroglandular region has fewer, more widely separated adipose compartments. Simulation parameters can be selected to cover the breadth of variations in breast anatomy observed clinically.
RESULTS: When simulating breasts of the same glandularity with different numbers of adipose compartments, the average compartment volume was proportional to the phantom size and inversely proportional to the number of simulated compartments. The use of the software phantom in clinical image simulation is illustrated by synthetic digital breast tomosynthesis images of the phantom. The proposed phantom design was capable of simulating breasts of different size, glandularity, and adipose compartment distribution. The region-growing approach allowed us to simulate adipose compartments with various size and shape. Qualitatively, simulated x-ray projections of the phantoms, generated using the proposed algorithm, have a more realistic appearance compared to previous versions of the phantom.
CONCLUSIONS: A new algorithm for computer simulation of breast anatomy has been proposed that improved the realism of the anthropomorphic software breast phantom.

Mesh:

Year:  2011        PMID: 21815391      PMCID: PMC3125083          DOI: 10.1118/1.3590357

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


  31 in total

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5.  Comparison of power spectra for tomosynthesis projections and reconstructed images.

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8.  Classification of galactograms with ramification matrices: preliminary results.

Authors:  Predrag R Bakic; Michael Albert; Andrew D A Maidment
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Authors:  H P Dinkel; A Trusen; A M Gassel; M Rominger; S Lourens; T Müller; A Tschammler
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10.  Breast percent density: estimation on digital mammograms and central tomosynthesis projections.

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  25 in total

1.  Optimized generation of high resolution breast anthropomorphic software phantoms.

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2.  A statistically defined anthropomorphic software breast phantom.

Authors:  Beverly A Lau; Ingrid Reiser; Robert M Nishikawa; Predrag R Bakic
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3.  Population of 224 realistic human subject-based computational breast phantoms.

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4.  Optimization of digital breast tomosynthesis (DBT) acquisition parameters for human observers: effect of reconstruction algorithms.

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Review 6.  Task-based measures of image quality and their relation to radiation dose and patient risk.

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7.  Evaluation of non-Gaussian statistical properties in virtual breast phantoms.

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8.  Advances in Computational Human Phantoms and Their Applications in Biomedical Engineering - A Topical Review.

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