Wavelia Breast Imaging: The Optical Breast Contour Detection Subsystem
Wavelia is a low-power electromagnetic wave breast imaging device for breast cancer diagnosis, which consists of two subsystems, both performing non-invasive examinations: the Microwave Breast Imaging (MBI) subsystem and the Optical Breast Contour Detection (OBCD) subsystem. The Wavelia OBCD subsyst...
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doaj-d5c071554c254420b57f777961fc3a522020-11-25T02:05:26ZengMDPI AGApplied Sciences2076-34172020-02-01104123410.3390/app10041234app10041234Wavelia Breast Imaging: The Optical Breast Contour Detection SubsystemJulio Daniel Gil Cano0Angie Fasoula1Luc Duchesne2Jean-Gael Bernard3MVG Industries, 29280 Plouzané, FranceMVG Industries, 91140 Villejust, FranceMVG Industries, 91140 Villejust, FranceMVG Industries, 91140 Villejust, FranceWavelia is a low-power electromagnetic wave breast imaging device for breast cancer diagnosis, which consists of two subsystems, both performing non-invasive examinations: the Microwave Breast Imaging (MBI) subsystem and the Optical Breast Contour Detection (OBCD) subsystem. The Wavelia OBCD subsystem is a 3D scanning device using an infrared 3D stereoscopic camera, which performs an azimuthal scan to acquire 3D point clouds of the external surface of the breast. The OBCD subsystem aims at reconstructing fully the external envelope of the breast, with high precision, to provide the total volume of the breast and morphological data as a priori information to the MBI subsystem. This paper presents a new shape-based calibration procedure for turntable-based 3D scanning devices, a new 3D breast surface reconstruction method based on a linear stretching function, as well as the breast volume computation method that have been developed and integrated with the Wavelia OBCD subsystem, before its installation at the Clinical Research Facility of Galway (CRFG), in Ireland, for first-in-human clinical testing. Indicative results of the Wavelia OBCD subsystem both from scans of experimental breast phantoms and from patient scans are thoroughly presented and discussed in the paper.https://www.mdpi.com/2076-3417/10/4/1234breast surface reconstruction3d scanning systemturntable calibrationbreast cancer diagnosismicrowave imagingmedical radarbreast phantoms |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Julio Daniel Gil Cano Angie Fasoula Luc Duchesne Jean-Gael Bernard |
spellingShingle |
Julio Daniel Gil Cano Angie Fasoula Luc Duchesne Jean-Gael Bernard Wavelia Breast Imaging: The Optical Breast Contour Detection Subsystem Applied Sciences breast surface reconstruction 3d scanning system turntable calibration breast cancer diagnosis microwave imaging medical radar breast phantoms |
author_facet |
Julio Daniel Gil Cano Angie Fasoula Luc Duchesne Jean-Gael Bernard |
author_sort |
Julio Daniel Gil Cano |
title |
Wavelia Breast Imaging: The Optical Breast Contour Detection Subsystem |
title_short |
Wavelia Breast Imaging: The Optical Breast Contour Detection Subsystem |
title_full |
Wavelia Breast Imaging: The Optical Breast Contour Detection Subsystem |
title_fullStr |
Wavelia Breast Imaging: The Optical Breast Contour Detection Subsystem |
title_full_unstemmed |
Wavelia Breast Imaging: The Optical Breast Contour Detection Subsystem |
title_sort |
wavelia breast imaging: the optical breast contour detection subsystem |
publisher |
MDPI AG |
series |
Applied Sciences |
issn |
2076-3417 |
publishDate |
2020-02-01 |
description |
Wavelia is a low-power electromagnetic wave breast imaging device for breast cancer diagnosis, which consists of two subsystems, both performing non-invasive examinations: the Microwave Breast Imaging (MBI) subsystem and the Optical Breast Contour Detection (OBCD) subsystem. The Wavelia OBCD subsystem is a 3D scanning device using an infrared 3D stereoscopic camera, which performs an azimuthal scan to acquire 3D point clouds of the external surface of the breast. The OBCD subsystem aims at reconstructing fully the external envelope of the breast, with high precision, to provide the total volume of the breast and morphological data as a priori information to the MBI subsystem. This paper presents a new shape-based calibration procedure for turntable-based 3D scanning devices, a new 3D breast surface reconstruction method based on a linear stretching function, as well as the breast volume computation method that have been developed and integrated with the Wavelia OBCD subsystem, before its installation at the Clinical Research Facility of Galway (CRFG), in Ireland, for first-in-human clinical testing. Indicative results of the Wavelia OBCD subsystem both from scans of experimental breast phantoms and from patient scans are thoroughly presented and discussed in the paper. |
topic |
breast surface reconstruction 3d scanning system turntable calibration breast cancer diagnosis microwave imaging medical radar breast phantoms |
url |
https://www.mdpi.com/2076-3417/10/4/1234 |
work_keys_str_mv |
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