Combination of Digital Mammography with Semi-automated 3D Breast Ultrasound

Author:

Kapur Ajay1,Carson Paul L.2,Eberhard Jeffrey1,Goodsitt Mitchell M.2,Thomenius Kai1,Lokhandwalla Murtuza1,Buckley Donald1,Roubidoux Marilyn A.2,Helvie Mark A.2,Booi Rebecca C.2,LeCarpentier Gerald L.2,Erkamp Ramon Q.2,Chan Heang-Ping2,Fowlkes J. Brian2,Thomas Jerry A.3,Landberg Cynthia E.1

Affiliation:

1. GE Global Research Room KWC524 1 Research Circle Niskayuna, NY 12309 USA

2. University of Michigan Department of Radiology R3322 KRESGE III 280 Zina Pitcher Place Ann Arbor, MI 48109 USA

3. Uniformed Services University of the Health Sciences 4301 Jones Bridge Road Bethesda, MD 20814 USA

Abstract

This paper describes work aimed at combining 3D ultrasound with full-field digital mammography via a semi-automatic prototype ultrasound scanning mechanism attached to the digital mammography system gantry. Initial efforts to obtain high x-ray and ultrasound image quality through a compression paddle are proving successful. Registration between the x-ray mammogram and ultrasound image volumes is quite promising when the breast is stably compressed. This prototype system takes advantage of many synergies between the co-registered digital mammography and pulse-echo ultrasound image data used for breast cancer detection and diagnosis. In addition, innovative combinations of advanced US and X-ray applications are being implemented and tested along with the basic modes. The basic and advanced applications are those that should provide relatively independent information about the breast tissues. Advanced applications include x-ray tomosynthesis, for 3D delineation of mammographic structures, and non-linear elasticity and 3D color flow imaging by ultrasound, for mechanical and physiological information unavailable from conventional, non-contrast x-ray and ultrasound imaging.

Publisher

SAGE Publications

Subject

Cancer Research,Oncology

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