DocumentCode
3462323
Title
Removal of harmonic artifacts from synchrotron radiation coronary angiograms
Author
Zeman, H.D. ; Moulin, H.R.
Author_Institution
Dept. of Biomed. Eng., Tennessee Univ., Memphis, TN, USA
fYear
1991
fDate
2-9 Nov. 1991
Firstpage
1826
Abstract
Intravenous coronary angiograms of human subjects are now available from the National Synchrotron Light Source (NSLS). The high (4.4-T) magnetic field used under normal operation of the superconducting wiggler magnet on the X-17 beam line at NSLS yields a high critical energy (18.7 keV) and a large harmonic contamination of the desired X-ray flux at the K-edge of iodine (33.169 keV). The 66- and 99-keV contamination is a factor of 2.29 and 5.32 worse than for the human angiograms taken at the Stanford Synchrotron Radiation Laboratory, where a critical energy of 13.0 keV was obtained at beam line IV-2. This increased harmonic contamination produces severe artifacts in the images, especially where the patient´s ribs cross the left ventrical and aorta, which are filled with contrast agent. An algorithm was developed to remove these artifacts by solving the two simultaneous transcendental equations for the fractional X-ray transmissions through iodine and through water. The parameters are derived from measurements on a Lucite step-wedge phantom. Human angiograms taken at 4.4 T are shown before and after the correction algorithm is applied. These corrected angiograms are compared to uncorrected angiograms taken at 3.0 T.<>
Keywords
cardiology; diagnostic radiography; medical image processing; synchrotron radiation; 13 to 99 keV; 3 T; 4.4 T; Lucite step-wedge phantom; National Synchrotron Light Source; X-ray flux; algorithm; contrast agent; fractional X-ray transmissions; harmonic contamination; human angiograms; image artifacts; intravenous coronary angiograms; medical diagnostic imaging; simultaneous transcendental equations; superconducting wiggler magnet; synchrotron radiation coronary angiograms; Biomedical imaging; Contamination; Humans; Laboratories; Light sources; Magnetic fields; Ribs; Superconducting magnets; Synchrotron radiation; Undulators;
fLanguage
English
Publisher
ieee
Conference_Titel
Nuclear Science Symposium and Medical Imaging Conference, 1991., Conference Record of the 1991 IEEE
Conference_Location
Santa Fe, NM, USA
Print_ISBN
0-7803-0513-2
Type
conf
DOI
10.1109/NSSMIC.1991.259230
Filename
259230
Link To Document