SAFIR-I: Design and Performance of a High-Rate Preclinical PET Insert for MRI
Author:
Bebié PascalORCID,
Becker Robert,
Commichau Volker,
Debus Jan,
Dissertori Günther,
Djambazov Lubomir,
Eleftheriou Afroditi,
Fischer JannisORCID,
Fischer Peter,
Ito Mikiko,
Khateri Parisa,
Lustermann WernerORCID,
Ritzer ChristianORCID,
Ritzert Michael,
Röser Ulf,
Tsoumpas CharalamposORCID,
Warnock Geoffrey,
Weber Bruno,
Wyss Matthias T.ORCID,
Zagozdzinska-Bochenek Agnieszka
Abstract
(1) Background: Small Animal Fast Insert for MRI detector I (SAFIR-I) is a preclinical Positron Emission Tomography (PET) insert for the Bruker BioSpec 70/30 Ultra Shield Refrigerated (USR) preclinical 7T Magnetic Resonance Imaging (MRI) system. It is designed explicitly for high-rate kinetic studies in mice and rats with injected activities reaching 500MBq, enabling truly simultaneous quantitative PET and Magnetic Resonance (MR) imaging with time frames of a few seconds in length. (2) Methods: SAFIR-I has an axial field of view of 54.2mm and an inner diameter of 114mm. It employs Lutetium Yttrium OxyorthoSilicate (LYSO) crystals and Multi Pixel Photon Counter (MPPC) arrays. The Position-Energy-Timing Application Specific Integrated Circuit, version 6, Single Ended (PETA6SE) digitizes the MPPC signals and provides time stamps and energy information. (3) Results: SAFIR-I is MR-compatible. The system’s Coincidence Resolving Time (CRT) and energy resolution are between separate-uncertainty 209.0(3)ps and separate-uncertainty 12.41(02) Full Width at Half Maximum (FWHM) at low activity and separate-uncertainty 326.89(12)ps and separate-uncertainty 20.630(011) FWHM at 550MBq, respectively. The peak sensitivity is ∼1.6. The excellent performance facilitated the successful execution of first in vivo rat studies beyond 300MBq. Based on features visible in the acquired images, we estimate the spatial resolution to be ∼2mm in the center of the Field Of View (FOV). (4) Conclusion: The SAFIR-I PET insert provides excellent performance, permitting simultaneous in vivo small animal PET/MR image acquisitions with time frames of a few seconds in length at activities of up to 500MBq.
Funder
Eidgenössische Technische Hochschule Zürich
ETH Zürich Foundation
Universität Zürich
Royal Society Industry Fellowship
Subject
Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry
Cited by
3 articles.
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1. SAFIR-I: first NEMA NU 4-2008-based performance characterization;EJNMMI Physics;2023-12-12
2. The SAFIR-I PET Insert: Performance With Inter-Crystal Scatter Recovery Following NEMA NU 4-2008 Procedures;2023 IEEE Nuclear Science Symposium, Medical Imaging Conference and International Symposium on Room-Temperature Semiconductor Detectors (NSS MIC RTSD);2023-11-04
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