By Richard E. Carson, Peter Herscovitch, Margaret E. Daube-Witherspoon

This booklet provides the newest medical advancements within the box of positron emission tomography (PET) facing facts acquisition, photo processing, functions, statistical research, tracer improvement, parameter estimation, and kinetic modeling. It covers more desirable method and the applying of current strategies to new parts. The textual content additionally describes new techniques in scanner layout and photo processing, and the newest recommendations for modeling and statistical analyses. This quantity could be an invaluable reference for the lively mind puppy scientist, in addition to a precious creation for college kids and researchers who desire to make the most of the features of puppy to review the conventional and diseased mind. Key good points* Authored through foreign gurus in puppy* offers the newest up to date ideas and functions* Covers all primary disciplines of puppy in a single quantity* A entire source for college students, clinicians, and new puppy researchers

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1117-1119. IEEE, Piscataway, NJ. , Goldberg, M. , and Tavernier, S. (1994). Study of a high resolution 3D PET Scanner. Nucl. Instrum. Methods A348: 607-612. This Page Intentionally Left Blank C H A P T E R Design of a High—Resolution, High-Sensitivity PET Camera for Human Brains and Small Animals^ W. W. MOSES, P. R. G. VIRADOR, S. £. DERENZO, R. H. HUESMAN, and T. F. BUDINGER Lawrence Berkeley National Laboratory University of California Berkeley, California 94720 I. INTRODUCTION Design parameters for a three-dimensional positron emission tomography camera with high sensitivity (35-cm detector ring diameter, 15-cm axial field of view) and isotropic high resolution provided by detector modules capable of depth of interaction (DOI) measurement are presented.

36: 964-968. , and Msaki, P. (1996). Initial results from the Sherbrooke avalanche photodiode positron tomograph. IEEE Trans. Nucl. Sci. 43: 1952-1957. Mumcuoglu, E. , Leahy, R. , and Cherry, S. R. (1996). Bayesian reconstruction of PET images: Quantitative methodology and performance analysis. Phys. Med. Biol. 41: 1777-1807. , Hume, S. , Lammertsma, A. , Bloomfield, P. , and Jones, T. (1996). Quantification of dopamine receptors and transporter in rat striatum using a small animal PET scanner.

1984). Initial characterization of a BGO-silicon photodiode detector for high resolution PET. IEEE Trans. Nucl. Sci. 31: 620-626. 2. Design of a PET Camera for Human Brains and Small Animals Derenzo, S. E. (1986). Recent developments in positron emission tomography (PET) instrumentation. Proc. SPIE 671: 232-243. Ruber, J. , Moses, W. , Derenzo, S. , Ho, M. , Andreaco, M. , Paulus, M. , and Nutt, R. (1997). Characterization of a 64 channel PET detector using photodiodes for crystal identification.

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Quantitative Functional Brain Imaging with Positron Emission by Richard E. Carson, Peter Herscovitch, Margaret E.
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