DocumentCode
438677
Title
Diversity combining signal processing and NEC in list-mode PET
Author
Worstell, William ; Kudrolli, Haris ; Nevin, John ; Rohatgi, Rajeev ; Romanov, Leonid
Author_Institution
PhotoDetection Syst. Inc., Acton, MA, USA
Volume
6
fYear
2004
fDate
16-22 Oct. 2004
Firstpage
3814
Abstract
The noise equivalent count (NEC) metric is designed to be proportional to the square of the average signal to noise in statistics-limited reconstructed PET images. It is equal to the trues count rate times the detective quantum efficiency averaged over the projection space region containing all lines-of-response traversing an object (typically a 20 cm diameter phantom). In list-mode PET, a number of attributes such as time and energy measurements are typically recorded in association with each independent event. Conventional PET signal processing, and the NEMA protocol for NEC measurement which corresponds to it, treats each independent event as contributing equally to NEC. Diversity combining signal processing provides an alternative, and in fact optimal, methodology which makes use of event attributes so as to maximize signal-to-noise. Conventional thresholding and windowing techniques may be replaced with adaptive, optimal weights, which may be derived from observed event and event ensemble characteristics. We discuss strategies for obtaining such scan-specific weights. The resulting signal-to-noise improvements can be used to shorten imaging times, decrease patient dose, or increase image quality.
Keywords
image reconstruction; medical image processing; positron emission tomography; statistical analysis; NEMA protocol; detective quantum efficiency; diversity combining signal processing; global weighting; image quality; list-mode PET; noise equivalent count metric; optimal weight values; random weighting; signal to noise improvements; statistics-limited reconstructed PET images; Diversity reception; Energy measurement; Image reconstruction; Imaging phantoms; National electric code; Object detection; Positron emission tomography; Protocols; Signal design; Signal processing;
fLanguage
English
Publisher
ieee
Conference_Titel
Nuclear Science Symposium Conference Record, 2004 IEEE
ISSN
1082-3654
Print_ISBN
0-7803-8700-7
Electronic_ISBN
1082-3654
Type
conf
DOI
10.1109/NSSMIC.2004.1466711
Filename
1466711
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