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Effect of partition coefficient, permeability surface product, and radioisotope on the signal-to-noise ratio in PET functional brain mapping: a computer simulation

✍ Scribed by Charles C. Martin; Paul A. Jerabek,; Lisa D.H. Nickerson; Peter T. Fox


Publisher
John Wiley and Sons
Year
1999
Tongue
English
Weight
114 KB
Volume
7
Category
Article
ISSN
1065-9471

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✦ Synopsis


In this work we use a computer simulation to estimate the magnitude of improvement in the signal-to-noise ratio of PET functional brain mapping studies as a function of partition coefficient and permeability surface product for O-14, F-17, and O-15 labeled flow tracers. A model for signal-to-noise ratio is derived from the Kety model for inert diffusible blood flow tracers. The results of the simulation suggest that moderate increases in partition coefficient and permeability surface product compared with water would lead to an increase in signal-to-noise ratio of a factor of about 3.