4.5 Tesla magnetic field reduces range of high-energy positrons - Potential implications for positron emission tomography

被引:35
作者
Wirrwar, A
Vosberg, H
Herzog, H
Halling, H
Weber, S
MullerGartner, HW
机构
[1] FORSCHUNGSZENTRUM JULICH GMBH, INST MED, D-52428 JULICH, GERMANY
[2] FORSCHUNGSZENTRUM JULICH GMBH, ZENT INST ELEKT, D-52428 JULICH, GERMANY
关键词
SPATIAL-RESOLUTION; PET; DESIGN;
D O I
10.1109/23.568801
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
We have theoretically and experimentally investigated the extent to which homogeneous magnetic fields up to 7 Tesla reduce the spatial distance positrons travel before annihilation (positron range). Computer simulations of a noncoincident detector design using a Monte Carlo algorithm calculated the positron range as a function of positron energy and magnetic field strength. The simulation predicted improvements in resolution, defined as full-width at half-maximum (FWHM) of the line-spread function (LSF) for a magnetic field strength up to 7 Tesla: negligible fur F-18, from 3.35 mm to 2.73 mm for Ga-68 and from 3.66 mm to 2.68 mm For Rb-82. Also a substantial noise suppression was observed, described by the full-width at tenth-maximum (FWTM) for higher positron energies. The experimental approach confirmed an improvement in resolution for Ga-68 from 3.54 mm at 0 Tesla to 2.99 mm FWHM at 4.5 Tesla and practically no improvement for F-18 (2.97 mm at 0 Tesla and 2.95 mm at 4.5 Tesla), It is concluded that the simulation model is appropriate and that: a homogeneous static magnetic field of 4.5 Tesla reduces the range of high-energy positrons to an extent that may improve spatial resolution in positron emission tomography.
引用
收藏
页码:184 / 189
页数:6
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