Segmentation of the Breast Skin and Its Influence in the Simulation of the Breast Compression during an X-Ray Mammography
A novel method of skin segmentation is presented aimed to obtain as many pixels belonging to the real skin as possible. This method is validated by experts in radiology. In addition, a biomechanical model of the breast, which considers the skin segmented in this way, is constructed to study the infl...
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| Published in | TheScientificWorld Vol. 2012; no. 2012; pp. 1 - 8 |
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| Main Authors | , , , , , |
| Format | Journal Article |
| Language | English |
| Published |
Cairo, Egypt
Hindawi Puplishing Corporation
01.01.2012
The Scientific World Journal John Wiley & Sons, Inc Wiley |
| Subjects | |
| Online Access | Get full text |
| ISSN | 2356-6140 1537-744X 1537-744X |
| DOI | 10.1100/2012/876489 |
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| Abstract | A novel method of skin segmentation is presented aimed to obtain as many pixels belonging to the real skin as possible. This method is validated by experts in radiology. In addition, a biomechanical model of the breast, which considers the skin segmented in this way, is constructed to study the influence of considering real skin in the simulation of the breast compression during an X-ray mammography. The reaction forces of the plates are obtained and compared with the reaction forces obtained using classical methods that model the skin as a 2D membranes that cover all the breast. The results of this work show that, in most of the cases, the method of skin segmentation is accurate and that real skin should be considered in the simulation of the breast compression during the X-ray mammographies. |
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| AbstractList | A novel method of skin segmentation is presented aimed to obtain as many pixels belonging to the real skin as possible. This method is validated by experts in radiology. In addition, a biomechanical model of the breast, which considers the skin segmented in this way, is constructed to study the influence of considering real skin in the simulation of the breast compression during an X-ray mammography. The reaction forces of the plates are obtained and compared with the reaction forces obtained using classical methods that model the skin as a 2D membranes that cover all the breast. The results of this work show that, in most of the cases, the method of skin segmentation is accurate and that real skin should be considered in the simulation of the breast compression during the X-ray mammographies. A novel method of skin segmentation is presented aimed toobtain as many pixels belonging to the real skin as possible. This methodis validated by experts in radiology. In addition, a biomechanical model ofthe breast, which considers the skin segmented in this way, is constructed tostudy the influence of considering real skin in the simulation of the breastcompression during an X-ray mammography. The reaction forces of theplates are obtained and compared with the reaction forces obtained usingclassical methods that model the skin as a 2D membranes that cover all thebreast. The results of this work show that, in most of the cases, the methodof skin segmentation is accurate and that real skin should be considered inthe simulation of the breast compression during the X-ray mammographies. A novel method of skin segmentation is presented aimed to obtain as many pixels belonging to the real skin as possible. This method is validated by experts in radiology. In addition, a biomechanical model of the breast, which considers the skin segmented in this way, is constructed to study the influence of considering real skin in the simulation of the breast compression during an X-ray mammography. The reaction forces of the plates are obtained and compared with the reaction forces obtained using classical methods that model the skin as a 2D membranes that cover all the breast. The results of this work show that, in most of the cases, the method of skin segmentation is accurate and that real skin should be considered in the simulation of the breast compression during the X-ray mammographies. A novel method of skin segmentation is presented aimed to obtain as many pixels belonging to the real skin as possible. This method is validated by experts in radiology. In addition, a biomechanical model of the breast, which considers the skin segmented in this way, is constructed to study the influence of considering real skin in the simulation of the breast compression during an X-ray mammography. The reaction forces of the plates are obtained and compared with the reaction forces obtained using classical methods that model the skin as a 2D membranes that cover all the breast. The results of this work show that, in most of the cases, the method of skin segmentation is accurate and that real skin should be considered in the simulation of the breast compression during the X-ray mammographies.A novel method of skin segmentation is presented aimed to obtain as many pixels belonging to the real skin as possible. This method is validated by experts in radiology. In addition, a biomechanical model of the breast, which considers the skin segmented in this way, is constructed to study the influence of considering real skin in the simulation of the breast compression during an X-ray mammography. The reaction forces of the plates are obtained and compared with the reaction forces obtained using classical methods that model the skin as a 2D membranes that cover all the breast. The results of this work show that, in most of the cases, the method of skin segmentation is accurate and that real skin should be considered in the simulation of the breast compression during the X-ray mammographies. |
| Author | Lloret, M. Rupérez, M. J. Monserrat, C. Solves Llorens, J. A. Feliu, E. García, M. |
| AuthorAffiliation | 2 Unidad RM, Hospital Clínica Benidorm, Avenida Alfonso Puchades 8, 03501 Benidorm, Spain 3 Servicio de Radiodiagnóstico de Adultos, Hospital Universitari y Politècnic La Fe de Valencia, Bulevar Sur, 46026 Valencia, Spain 1 Instituto Interuniversitario de Investigación en Bioingeniería y Tecnología Orientada al Ser Humano/LabHuman, Universitat Politècnica de València, Camino de Vera s/n, 46022 Valencia, Spain |
| AuthorAffiliation_xml | – name: 3 Servicio de Radiodiagnóstico de Adultos, Hospital Universitari y Politècnic La Fe de Valencia, Bulevar Sur, 46026 Valencia, Spain – name: 1 Instituto Interuniversitario de Investigación en Bioingeniería y Tecnología Orientada al Ser Humano/LabHuman, Universitat Politècnica de València, Camino de Vera s/n, 46022 Valencia, Spain – name: 2 Unidad RM, Hospital Clínica Benidorm, Avenida Alfonso Puchades 8, 03501 Benidorm, Spain |
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| BackLink | https://www.ncbi.nlm.nih.gov/pubmed/22629220$$D View this record in MEDLINE/PubMed |
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| CitedBy_id | crossref_primary_10_1155_2014_928395 crossref_primary_10_1016_j_compbiomed_2017_09_019 crossref_primary_10_1016_j_cmpbup_2022_100052 crossref_primary_10_1118_1_4885957 crossref_primary_10_1152_physiol_00024_2019 |
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| Contributor | Solves Llorens, J. A Monserrat, C Feliu, E García, M Rupérez, M. J Lloret, M |
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| Copyright | Copyright © 2012 J. A. Solves Llorens et al. Copyright © 2012 J. A. Solves Llorens et al. 2012 |
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| Snippet | A novel method of skin segmentation is presented aimed to obtain as many pixels belonging to the real skin as possible. This method is validated by experts in... A novel method of skin segmentation is presented aimed toobtain as many pixels belonging to the real skin as possible. This methodis validated by experts in... A novel method of skin segmentation is presented aimed to obtain as many pixels belonging to the real skin as possible. This method is validated by experts in... |
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| SubjectTerms | Algorithms Biomechanics Breast Breast - physiology Breast cancer Compression Computer Simulation Elastic Modulus Health physics Humans Mammography Mammography - methods Mechanical properties Methods Models, Biological NMR Nuclear magnetic resonance Palpation Physics R&D Radiographic Image Interpretation, Computer-Assisted - methods Radiology Reproducibility of Results Research & development Research methodology Segmentation Sensitivity and Specificity Simulation Skin Skin - diagnostic imaging Skin Physiological Phenomena Studies Two dimensional models |
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| Title | Segmentation of the Breast Skin and Its Influence in the Simulation of the Breast Compression during an X-Ray Mammography |
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