DocumentCode
1216839
Title
Cardiac ejection fraction and volume measurements using dynamic cardiac phantoms and radionuclide imaging
Author
Jang, Sunyoung ; Jaszczak, Ronald J. ; Li, Jianying ; Debatin, Jörg F. ; Nadel, Scott N. ; Evans, Avery J. ; Greer, Kim L. ; Coleman, R. Edward
Author_Institution
Dept. of Biomed. Eng., Duke Univ., Durham, NC, USA
Volume
41
Issue
6
fYear
1994
Firstpage
2845
Lastpage
2849
Abstract
Dynamic cardiac phantoms and radionuclide imaging were used to obtain ejection fraction (EF) and left ventricular (LV) volume measurements. Tc-99m pertechnetate and water solutions were used to fill the ventricles, and 10 to 51 ml were added to the ventricular chambers so that 5 ejection fractions of 15% to 55% were produced. For planar and SPECT imaging a triple camera system with three different collimators, low energy high resolution (LEHR), ultra-high resolution (LEUR), and super high resolution (LESR) parallel beam collimators, were used. Three different collimators were chosen to evaluate the effects of different collimator resolutions on EF and LV volume measurements. The EF measurements from the planar images by three different collimators agree well with the actual EF within 10%. The volume estimations by pixel summing method produced the best estimations with a threshold of about 50% of the peak value within the ROI. In general, the lower the resolution of the collimator the greater the deviation in the measured LV volume as the threshold level was changed. Overall, the count based method yielded the most reliable estimations in EF and volume measurements. The dynamic cardiac phantom is useful for evaluating methods for gated cardiac function measurements and studying collimator characteristics in cardiac imaging.<>
Keywords
radioisotope imaging; single photon emission computed tomography; volume measurement; Tc; cardiac ejection fraction; collimator characteristics; collimator resolution; count based method; dynamic cardiac phantoms; gated cardiac function measurements; medical diagnostic imaging; nuclear medicine; pixel summing method; radionuclide imaging; Biomedical imaging; Biomedical measurements; Cameras; Collimators; Energy resolution; Engine cylinders; Image resolution; Imaging phantoms; Radiology; Volume measurement;
fLanguage
English
Journal_Title
Nuclear Science, IEEE Transactions on
Publisher
ieee
ISSN
0018-9499
Type
jour
DOI
10.1109/23.340656
Filename
340656
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