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RESEARCH PRODUCT

A high-resolution PET demonstrator using a silicon "magnifying glass".

Andrej StudenMilan GrkovskiMarko MikužD. ŽOntarP. WeilhammerV. StankovaS.s. HuhBorut GrosicarK. HonscheidD. Shane SmithHarris KaganVladimir LinhartNeal H. ClinthorneKarol BrzezinskiEric W. CochranCarlos LacastaE. Chesi

subject

ScannerPhotonSiliconchemistry.chemical_elementScintillatorPhysics and Astronomy(all)01 natural sciencesArticle030218 nuclear medicine & medical imaging03 medical and health sciences0302 clinical medicineOpticssilicon detectors0103 physical sciencesDetectors and Experimental Techniquesmagnifying PETImage resolutionPhysics010308 nuclear & particles physicsbusiness.industryDetectorResolution (electron density)high-resolution imagingRadiusPETchemistrybusiness

description

Abstract To assist ongoing investigations of the limits of the tradeoff between spatial resolution and noise in PET imaging, several PET instruments based on silicon-pad detectors have been developed. The latest is a segment of a dual-ring device to demonstrate that excellent reconstructed image resolution can be achieved with a scanner that uses highresolution detectors placed close to the object of interest or surrounding a small field-of-view in combination with detectors having modest resolution at larger radius. The outer ring of our demonstrator comprises conventional BGO block detectors scavenged from a clinical PET scanner and located at a 500 mm radius around a 50 mm diameter field-of-view. The inner detector–in contrast to the high-Z scintillator typically used in PET–is based on silicon-pad detectors located at 70 mm nominal radius. Each silicon detector has 512 1.4 mm x 1.4 mm x 1 mm detector elements in a 16 x 32 array and is read out using VATA GP7 ASICs (Gamma Medica-Ideas, Northridge, CA). Even though virtually all interactions of 511 keV annihilation photons in silicon are Compton-scatter, both high spatial resolution and reasonable sensitivity appears possible. The system has demonstrated resolution of ∼ 0.7 mm FWHM with Na-22 for coincidences having the highest intrinsic resolution (silicon-silicon) and 5–6 mm FWHM for the lowest resolution BGO-BGO coincidences. Spatial resolution for images reconstructed from the mixed silicon-BGO coincidences is ∼1.5 mm FWHM demonstrating the “magnifying-glass” concept.

10.1016/j.phpro.2012.03.747https://pubmed.ncbi.nlm.nih.gov/34306249