A High Resolution Detection System for Positron Tomography
Autor: | A.J. Dabrowski, J.H. Kusmiss, Edward J. Hoffman, J. B. Barton, Jan S. Iwanczyk |
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Rok vydání: | 1983 |
Předmět: |
Physics
Nuclear and High Energy Physics medicine.medical_specialty Scintillation Photomultiplier Physics::Instrumentation and Detectors Preamplifier business.industry Detector X-ray detector Photodetector Bismuth germanate Particle detector chemistry.chemical_compound Optics Nuclear Energy and Engineering chemistry medicine Medical physics Electrical and Electronic Engineering Nuclear Experiment business |
Zdroj: | IEEE Transactions on Nuclear Science. 30:671-675 |
ISSN: | 0018-9499 |
Popis: | The feasibility of using a hybrid detection system, consisting of multiple narrow bismuth germanate (BGO) crystals coupled to one photomultiplier for coincidence timing, and individual mercuric iodide (HgI2) photodetectors coupled to each BGO crystal to identify crystals of interaction, was investigated for application to positron tomography. The match between the emission spectrum of BGO and the photoresponse spectrum of HgI2 in combination with recently developed HgI2 x-ray detector and low noise preamplifier technology provided the appropriate high sensitivity, low noise environment required to detect the low levels of scintillation light produced in the absorption of 511 keV gamma-rays in BGO. Energy resoluton of 24% for 511 keV was obtained with the BGO-HgI2 detector, compared to 18% for BGO with a PMT. Coincidence resolving time for the HgI2-BGO detector was measured to be 105 nanoseconds. This performance of a non-optimized detector system is nominally adequate for appropriately designed tomographs. |
Databáze: | OpenAIRE |
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