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- W2048004805 abstract "Breast cancer is the most common type of cancer in women worldwide. Mammography is considered the „gold standard“ in detecting even small cancers, leading to identification of early-stage breast cancers. Despite this, mammography has substantial disadvantages such as moderate sensitivity ranging from 69–90%, radiation risk and further diminished sensitivity in radiographically dense breasts. Apart from mammography, ultrasound examination is being offered as the most important adjunct to the preoperative diagnostic work-up. However, ultrasound is operator-dependent, has a variable false-positive rate and the examination technique is not standardized. Furthermore, ultrasound shadowing as well as minimal or absent contrast between echolucent breast cancer and echolucent fatty tissue may hamper a clear delineation of the lesion. Due to this, the extent and 3D-geometry of the cancer may be difficult to determine. In order to overcome those limitations we developed a system for Full Angle Spatial Compounding (FASC). Here, ultrasound data are acquired from multiple viewing angles around the breast and superimposed with respect to its correct orientation. Though FASC has already been investigated in the 1980s, recent improvements in ultrasound imaging (e.g. harmonic imaging, beam forming and array technology) encourage a re-assessment. Using our system a standardized image generation is realized and compound images of high quality are computed in a cross-sectional view." @default.
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- W2048004805 date "2008-10-07" @default.
- W2048004805 modified "2023-09-27" @default.
- W2048004805 title "Ultrasonographic Breast Imaging using Full Angle Spatial Compounding (FASC): In-vivo evaluations" @default.
- W2048004805 doi "https://doi.org/10.1055/s-0028-1085877" @default.
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