Multi-PSPMT scintillation camera

R. Pani, A. Soluri, R. Scafè, A. Pergola, R. Pellegrini, G. De Vincentis, G. Trotta, F. Scopinaro

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Abstract

Gamma ray imaging is usually accomplished by the use of a relatively large scintillating crystal coupled to either a number of photomultipliers (PMTs) (Anger Camera) or to a single large Position Sensitive PMT (PSPMT). Recently the development of new diagnostic techniques, such as scintimammography and radio-guided surgery, have highlighted a number of significant limitations of the Anger camera in such imaging procedures. In this paper a dedicated gamma camera is proposed for clinical applications with the aim of improving image quality by utilizing detectors with an appropriate size and shape for the part of the body under examination. This novel scintillation camera is based upon an array of PSPMTs (Hamamatsu R5900-C8). The basic concept of this camera is identical to the Anger Camera with the exception of the substitution of PSPMTs for the PMTs. In this configuration it is possible to use the high resolution of the PSPMTs and still correctly position events lying between PSPMTs. In this work the test configuration is a 2 by 2 array of PSPMTs. Some advantages of this camera are: spatial resolution less than 2 mm FWHM, good linearity, thickness less than 3 cm, light weight, lower cost than equivalent area PSPMT, large detection area when coupled to scintillating arrays, small dead boundary zone (<3 mm) and flexibility in the shape of the camera. © 1999 IEEE.
Original languageEnglish
Pages (from-to)702 - 708
Number of pages7
JournalIEEE Transactions on Nuclear Science
Volume46
Issue number3 PART 2
DOIs
Publication statusPublished - 1999
Externally publishedYes

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All Science Journal Classification (ASJC) codes

  • Nuclear and High Energy Physics
  • Nuclear Energy and Engineering
  • Electrical and Electronic Engineering

Cite this

Pani, R., Soluri, A., Scafè, R., Pergola, A., Pellegrini, R., De Vincentis, G., ... Scopinaro, F. (1999). Multi-PSPMT scintillation camera. IEEE Transactions on Nuclear Science, 46(3 PART 2), 702 - 708. https://doi.org/10.1109/23.775602