McAdoo, J., "Moving CCDs create image with large field of view" Laser Focus World, pp. 233-235 (May 1994). |
Gallagher, P., "Amorphous silicon arrays promise large-area imagers", Laser Focus World, pp. 171-173, 175-176, 178 (may 1995). |
Yester et al., "Experimental measurements of the scatter reduction obtained in mammography with a scanning multiple slit assembly", Med. Phys. 8(2):158-162 (May./Apr. 1981). |
"Works-in-Progress", Medical Physics vol. 16:681 (1989). |
Herron et al., "X-ray imaging with two-dimensional charge-coupled device (CCD) arrays", Medical Imaging and Instrumentation '84 vol. 486 (1984):141-145. |
"Single Exposure Large Area Array Technology", Bennet X-Ray Technologies (no date given). |
"Digital Spot Imager" Bennett X-Ray Technologies (no date given). |
"Filmless Electronic X-ray Cassette In Development For Health Care Industry" Technology News, Loral Fairchild Imaging Sensors (no date given. |
Cheung et al., "A Full-field, Single-exposure Digital mammography system", Bennett X-Ray Technologies (no date given). |
Karellas et al., "Charge-coupled device detector: Performance considerations and potential for small-field mammographic imaging applications", Med.Phys 19(4) (Jul./Aug. 1992):1015-1023. |
Hunter et al., "CCD Mammography", SCAR 90, Computer Applications To Assist Radiology, Presented at The Conference on Computer Applications In Radiology, (Jun. 13-16, 1990):285-291. |
"Quality Determinants of Mammography", Clinical practice Guideline No. 13, U.S. Dept. of Health and Human Services (1994) pp. 54-57. |
Karellas, et al., "Small-Field Digital Mammography with a 2,048.times.2,048 Pixel Charge-Coupled Device" Presented at RSNA, (Nov. 1990). |
Liu et al., "Direct Electronic Capture of X-ray Images with an Intensifying Screen Optically Coupled to an Ultrasensitive Charge-coupled Device" Presented at RSNA, (Nov. 1991). |
Morgan et al., "Performance characteristics of a dual-energy detector for digital scan projection radiography", Med.Phys 14(5) (Sep./Oct. 1987):728-735. |
Rudin et al., "Conical rotating aperature geometries in digital radiography", Digital Radiography vol. 314 (1981):77-80. |
Dyck et al., "Some early imaging results with a 4096.times.4096-element x-ray image sensor", Loral Fairchild Imaging Sensors, Presented Apr. 20-22, 1995. |
Karellas et al., "Digital mammography: A powerful tool in stereotactic localization and core needle biopsy", Mammography Today, pp. 26-28. |
Karellas et al., "Near real-time mammographic imaging with a CCD", SPIE/IS&T's International Technical working Group Newsletter, Electronic Imaging, 2(3) (Aug. 1992). |
Karellas et al., "Small-field digital mammography: A window to the digital mammography of the future", Med. Phys. 20(3) (May-Jun. 1993). |
Shaw de Paredes, MD, "Radiographic Breast Anatomy: Radioologic Signs of Breast Cancer", Presented at 79th Scientific Assembly and Annual Meeting of RSNA (Nov. 28-Dec. 3, 1993):35-46. |
"Mammotest and MammoVision: Because She Comes To You For Answers" FISHCERIMAGING Brochure (no date given). |
Antonuk, et al., A High Resolution, High Frame Rate, Flat-Panel TFT Array For Digital x-ray Imaging:, Phys. of Med. Imaging vol. 2163 (1994) pp. 118-218. |
Antonuk, et al., "Demonstration of megavoltage and diagnostic s-ray imaging with hydrogenated amorphous silicon arrays", Med. Phys. 19(6):1455-1466 (Nov./Dec. 1992). |
"Breast Imaging Reporting And Data System", American College of Radiology Report, BI-RADS (May 19, 1993):1-22. |
Karellas et al., "Digital mammo delivers quick, reliable images", Breast Imagaing (Feb. 1994). |