Microcalcification distribution over the smallest breast volume (d
By A Mystery Man Writer
Description
![Microcalcification distribution over the smallest breast volume (d](https://i1.rgstatic.net/ii/profile.image/469256052711424-1488890769062_Q512/Pablo-Milioni-De-Carvalho.jpg)
Pablo MILIONI DE CARVALHO, Senior Researcher, PhD, General Electric, CA, GE, Division of Healthcare Technology
![Microcalcification distribution over the smallest breast volume (d](https://i1.rgstatic.net/ii/profile.image/1184967405109256-1659529653857_Q64/Arnaud-Mazier.jpg)
PDF) Simulation of breast compression using a new biomechanical model
![Microcalcification distribution over the smallest breast volume (d](https://www.researchgate.net/publication/373210284/figure/tbl1/AS:11431281182595662@1692411053533/CEM-dataset-and-pathology-results-The-presented-values-are-the-number-of-patients-The_Q320.jpg)
Pablo MILIONI DE CARVALHO, Senior Researcher, PhD, General Electric, CA, GE, Division of Healthcare Technology
![Microcalcification distribution over the smallest breast volume (d](https://www.researchgate.net/profile/Jan-Ehrhardt/publication/275517441/figure/fig5/AS:668444341043222@1536380958944/Four-examples-of-corresponding-structures-cysts-ex-1-vessel-clips-ex-2-dense_Q320.jpg)
Overview of the processing steps: (1) determination of 3D breast volume
![Microcalcification distribution over the smallest breast volume (d](https://i1.rgstatic.net/ii/profile.image/955873673347081-1604909451839_Q64/Yohan-Payan.jpg)
PDF) Simulation of breast compression using a new biomechanical model
![Microcalcification distribution over the smallest breast volume (d](https://i1.rgstatic.net/ii/profile.image/11431281195703413-1696447279668_Q64/Gregory-Chagnon.jpg)
PDF) Simulation of breast compression using a new biomechanical model
![Microcalcification distribution over the smallest breast volume (d](https://www.researchgate.net/publication/275517441/figure/fig5/AS:668444341043222@1536380958944/Four-examples-of-corresponding-structures-cysts-ex-1-vessel-clips-ex-2-dense.png)
Four examples of corresponding structures: cysts (ex. 1), vessel clips
![Microcalcification distribution over the smallest breast volume (d](https://www.researchgate.net/profile/Jan-Ehrhardt/publication/275517441/figure/fig1/AS:383327451271170@1468403794960/Slices-of-MR-images-that-were-excluded-due-to-large-deformation-by-breast-coils-or_Q320.jpg)
Overview of the processing steps: (1) determination of 3D breast volume
![Microcalcification distribution over the smallest breast volume (d](https://www.researchgate.net/profile/Yohan-Payan/publication/328339549/figure/fig7/AS:1070468735963138@1632231043564/Finite-element-mesh-components_Q320.jpg)
Anna MIRA, Research Associate, Doctor of Engineering, King's College London, London, KCL, Division of Imaging Sciences and Biomedical Engineering
![Microcalcification distribution over the smallest breast volume (d](https://www.researchgate.net/profile/Clement-Jailin/publication/368393860/figure/fig4/AS:11431281211772582@1702479724042/Residual-fields-a-GDIC-I-r-uv-f-g-u-v-0-c-GDIC-r-u-f-g-u-The-residuals_Q320.jpg)
Serge MULLER, Scientific Advisor, PhD, HDR, Institut de Cancérologie Gustave Roussy, Villejuif, IGR, Department of Medical Imaging
![Microcalcification distribution over the smallest breast volume (d](https://www.researchgate.net/profile/Clement-Jailin/publication/373617772/figure/fig1/AS:11431281185982454@1693810286763/Lesion-features-projected-onto-the-first-LDA-components-top-using-only-LE-and-REC_Q320.jpg)
Serge MULLER, Scientific Advisor, PhD, HDR, Institut de Cancérologie Gustave Roussy, Villejuif, IGR, Department of Medical Imaging
![Microcalcification distribution over the smallest breast volume (d](https://i1.rgstatic.net/ii/profile.image/908197061750784-1593542461654_Q512/Serge-Muller-2.jpg)
Serge MULLER, Scientific Advisor, PhD, HDR, Institut de Cancérologie Gustave Roussy, Villejuif, IGR, Department of Medical Imaging
![Microcalcification distribution over the smallest breast volume (d](https://www.spiedigitallibrary.org/ContentImages/Proceedings/10573/105735A/FigureImages/00010_PSISDG10573_105735A_page_2_1.jpg)
Simulation of breast compression using a new biomechanical model
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