Literature DB >> 30630146

High-frequency SiPM readout advances measured coincidence time resolution limits in TOF-PET.

Stefan Gundacker1, Rosana Martinez Turtos, Etiennette Auffray, Marco Paganoni, Paul Lecoq.   

Abstract

Scintillator based radiation detectors readout by SiPMs successively break records in their reached time resolution. Nevertheless, new challenges in time of flight positron emission tomography (TOF-PET) and high energy physics are setting unmatched goals in the 10 ps range. Recently it was shown that high frequency (HF) readout of SiPMs significantly improves the measured single photon time resolution (SPTR), allowing to evaluate the intrinsic performance of large area devices; e.g. FBK NUV-HD SiPMs of [Formula: see text] mm2 area and 40 [Formula: see text]m single photon avalanche diode (SPAD) size achieve 90 ps FWHM. In TOF-PET such readout allows to lower the leading edge detection threshold, so that the fastest photons produced in the crystal can be utilized. This is of utmost importance if a high SPTR and prompt Cherenkov light generated by the hot-recoil electron upon 511 keV photo-absorption should improve timing. This paper shows that high-frequency bipolar transistor readout of state-of-the-art SiPMs coupled to high-performance scintillators can substantially improve the best achievable coincidence time resolution (CTR) in TOF-PET. In this context a CTR of 158 [Formula: see text] 3 ps FWHM with [Formula: see text] mm3 BGO crystals coupled to FBK SiPMs is achieved. This faint Cherenkov signal is as well present in standard LSO scintillators, which together with low SPTR values (<90 ps FWHM) improves the CTR of [Formula: see text] mm3 LSO:Ce:Ca coupled to FBK NUV-HD [Formula: see text] mm2 with 25 [Formula: see text]m SPAD size to 61 [Formula: see text] 2 ps FWHM using HF-electronics, as compared to 73 [Formula: see text] 2 ps when readout by the NINO front-end ASIC. When coupling the LSO:Ce:Ca crystals to FBK NUV-HD SiPMs of [Formula: see text] mm2 and 40 [Formula: see text]m SPAD size, using HF-electronics, a CTR of even 58 [Formula: see text] 3 ps for [Formula: see text] mm3 and 98 [Formula: see text] 3 ps for [Formula: see text] mm3 is achieved. This new experimental data will allow to further discuss the timing limits in scintillator-based detectors.

Entities:  

Year:  2019        PMID: 30630146     DOI: 10.1088/1361-6560/aafd52

Source DB:  PubMed          Journal:  Phys Med Biol        ISSN: 0031-9155            Impact factor:   3.609


  12 in total

Review 1.  Photon counting detectors and their applications ranging from particle physics experiments to environmental radiation monitoring and medical imaging.

Authors:  Ryosuke Ota
Journal:  Radiol Phys Technol       Date:  2021-03-19

2.  Dual-ended readout of bismuth germanate to improve timing resolution in time-of-flight PET.

Authors:  Sun Il Kwon; Emilie Roncali; Alberto Gola; Giovanni Paternoster; Claudio Piemonte; Simon R Cherry
Journal:  Phys Med Biol       Date:  2019-05-10       Impact factor: 3.609

3.  Roadmap toward the 10 ps time-of-flight PET challenge.

Authors:  Paul Lecoq; Christian Morel; John O Prior; Dimitris Visvikis; Stefan Gundacker; Etiennette Auffray; Peter Križan; Rosana Martinez Turtos; Dominique Thers; Edoardo Charbon; Joao Varela; Christophe de La Taille; Angelo Rivetti; Dominique Breton; Jean-François Pratte; Johan Nuyts; Suleman Surti; Stefaan Vandenberghe; Paul Marsden; Katia Parodi; Jose Maria Benlloch; Mathieu Benoit
Journal:  Phys Med Biol       Date:  2020-10-22       Impact factor: 3.609

4.  Study of optical reflectors for a 100ps coincidence time resolution TOF-PET detector design.

Authors:  Andrea Gonzalez-Montoro; Shirin Pourashraf; Min Sun Lee; Joshua W Cates; Craig S Levin
Journal:  Biomed Phys Eng Express       Date:  2021-09-15

5.  Study of Čerenkov Light Emission in the Semiconductors TlBr and TlCl for TOF-PET.

Authors:  Gerard Ariño-Estrada; Emilie Roncali; Aaron R Selfridge; Junwei Du; Jaroslaw Glodo; Kanai S Shah; Simon R Cherry
Journal:  IEEE Trans Radiat Plasma Med Sci       Date:  2020-09-17

6.  Investigation of Electronic Signal Processing Chains for a Prototype TOF-PET System With 100-ps Coincidence Time Resolution.

Authors:  Shirin Pourashraf; Andrea Gonzalez-Montoro; Min Sun Lee; Joshua W Cates; Jun Yeon Won; Jae Sung Lee; Craig S Levin
Journal:  IEEE Trans Radiat Plasma Med Sci       Date:  2021-11-02

7.  Scalable electronic readout design for a 100 ps coincidence time resolution TOF-PET system.

Authors:  Shirin Pourashraf; Andrea Gonzalez-Montoro; Jun Yeon Won; Min Sun Lee; Joshua W Cates; Zhixiang Zhao; Jae Sung Lee; Craig S Levin
Journal:  Phys Med Biol       Date:  2021-04-14       Impact factor: 4.174

8.  Challenges for Microelectronics in Non-Invasive Medical Diagnostics.

Authors:  Marco Carminati; Carlo Fiorini
Journal:  Sensors (Basel)       Date:  2020-06-29       Impact factor: 3.576

9.  Performance assessment of the 2 γpositronium imaging with the total-body PET scanners.

Authors:  P Moskal; D Kisielewska; R Y Shopa; Z Bura; J Chhokar; C Curceanu; E Czerwiński; M Dadgar; K Dulski; J Gajewski; A Gajos; M Gorgol; R Del Grande; B C Hiesmayr; B Jasińska; K Kacprzak; A Kamińska; Ł Kapłon; H Karimi; G Korcyl; P Kowalski; N Krawczyk; W Krzemień; T Kozik; E Kubicz; P Małczak; M Mohammed; Sz Niedźwiecki; M Pałka; M Pawlik-Niedźwiecka; M Pędziwiatr; L Raczyński; J Raj; A Ruciński; S Sharma; S Shivani; M Silarski; M Skurzok; E Ł Stępień; S Vandenberghe; W Wiślicki; B Zgardzińska
Journal:  EJNMMI Phys       Date:  2020-06-30

10.  Evaluation of the PETsys TOFPET2 ASIC in multi-channel coincidence experiments.

Authors:  Vanessa Nadig; David Schug; Bjoern Weissler; Volkmar Schulz
Journal:  EJNMMI Phys       Date:  2021-03-24
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