TY - JOUR
T1 - Printed sources for Positron Emission Tomography (PET)
AU - Sossi, Vesna
AU - Buckley, Kenneth R.
AU - Piccioni, Paul
AU - Rahmim, Arman
AU - Camborde, Marie Laure
AU - Strome, Elissa
AU - Lapi, Suzy
AU - Ruth, Thomas J.
N1 - Funding Information:
Manuscript received November 15, 2003; revised September 7, 2004. This work was supported in part by a TRIUMF Life Science Grant, in part by the National Sciences and Engineering Research Council of Canada (VS and AR), and in part by the Michael Smith Foundation for Health and Research (VS). V. Sossi, A. Rahmim and, E. Strome are with the University of British Columbia, Vancouver, BC V6T 2A3 Canada (e-mail: vesna@phsyics.ubc.ca). K. R. Buckley, P. Paul, M.-L. Camborde, S. Lapi, and T. J. Ruth are with the TRIUMF, Vancouver, BC V6T 2A3 Canada (e-mail: buckley@triumf.ca). Digital Object Identifier 10.1109/TNS.2004.843136
PY - 2005/2
Y1 - 2005/2
N2 - We have developed a method that allows manufacturing of 18F radioactive printed sources using a standard ink-jet printer. Although previously used in printing and imaging single gamma emitter sources, such techniques have not been, to our knowledge, applied to the manufacturing of positron emitting sources. The added complication in the latter instance is a nonzero positron range and, thus, the need for some attenuating material surrounding the positron emitting atoms. The point sources were first imaged on a phosphor imager and then scanned on three different tomographs (Siemens/CTI ECAT 953B, CPS high-resolution reserach tomograph (HRRT) and Concorde microPET R4) to measure their point spread functions (PSFs). Where appropriate, the resolution agrees with published values. A comparison of the full width and tenth width half maxima of the point source profiles obtained with and without additional attenuating material showed no effect of the additional attenuation material on their values. The presence of the attenuating material however increased the number of counts in the point source image several fold due to a larger fraction of the positrons annihilating in the region close to the printed source. The results show that printed sources either on paper alone or on paper sandwiched between some additional attenuating material provide a practical means to obtain positron emitting sources.
AB - We have developed a method that allows manufacturing of 18F radioactive printed sources using a standard ink-jet printer. Although previously used in printing and imaging single gamma emitter sources, such techniques have not been, to our knowledge, applied to the manufacturing of positron emitting sources. The added complication in the latter instance is a nonzero positron range and, thus, the need for some attenuating material surrounding the positron emitting atoms. The point sources were first imaged on a phosphor imager and then scanned on three different tomographs (Siemens/CTI ECAT 953B, CPS high-resolution reserach tomograph (HRRT) and Concorde microPET R4) to measure their point spread functions (PSFs). Where appropriate, the resolution agrees with published values. A comparison of the full width and tenth width half maxima of the point source profiles obtained with and without additional attenuating material showed no effect of the additional attenuation material on their values. The presence of the attenuating material however increased the number of counts in the point source image several fold due to a larger fraction of the positrons annihilating in the region close to the printed source. The results show that printed sources either on paper alone or on paper sandwiched between some additional attenuating material provide a practical means to obtain positron emitting sources.
KW - Positron emission tomography imaging
KW - Printed radioactive sources
KW - Resolution
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U2 - 10.1109/TNS.2004.843136
DO - 10.1109/TNS.2004.843136
M3 - Article
AN - SCOPUS:17644394588
VL - 52
SP - 114
EP - 118
JO - IEEE Transactions on Nuclear Science
JF - IEEE Transactions on Nuclear Science
SN - 0018-9499
IS - 1 I
ER -