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MRI compatibility study of an integrated PET/RF-coil prototype system at 3 T
- Source :
- Journal of Magnetic Resonance. 283:62-70
- Publication Year :
- 2017
- Publisher :
- Elsevier BV, 2017.
-
Abstract
- We have been working on the development of a PET insert for existing magnetic resonance imaging (MRI) systems for simultaneous PET/MR imaging, which integrates radiofrequency (RF)-shielded PET detector modules with an RF head coil. In order to avoid interferences between the PET detector circuits and the different MRI-generated electromagnetic fields, PET detector circuits were installed inside eight Cu-shielded fiber-reinforced plastic boxes, and these eight shielded PET modules were integrated in between the eight elements of a 270-mm-diameter and 280-mm-axial-length cylindrical birdcage RF coil, which was designed to be used with a 3-T clinical MRI system. The diameter of the PET scintillators with a 12-mm axial field-of-view became 255mm, which was very close to the imaging region. In this study, we have investigated the effects of this PET/RF-coil integrated system on the performance of MRI, which include the evaluation of static field (Bo) inhomogeneity, RF field (B1) distribution, local specific absorption rate (SAR) distribution, average SAR, and signal-to-noise ratio (SNR). For the central 170-mm-diameter and 80-mm-axial-length of a homogenous cylindrical phantom (with the total diameter of 200mm and axial-length of 100mm), an increase of about a maximum of 3μT in the Bo inhomogeneity was found, both in the central and 40-mm off-centered transverse planes, and a 5 percentage point increase of B1 field inhomogeneity was observed in the central transverse plane (from 84% without PET to 79% with PET), while B1 homogeneity along the coronal plane was almost unchanged (77%) following the integration of PET with the RF head coil. The average SAR and maximum local SAR were increased by 1.21 and 1.62 times, respectively. However, the SNR study for both spin-echo and gradient-echo sequences showed a reduction of about 70% and 60%, respectively, because of the shielded PET modules. The overall results prove the feasibility of this integrated PET/RF-coil system for using with the existing MRI system.
- Subjects :
- Electromagnetic field
Nuclear and High Energy Physics
Materials science
medicine.diagnostic_test
Biophysics
Specific absorption rate
Magnetic resonance imaging
Condensed Matter Physics
Biochemistry
030218 nuclear medicine & medical imaging
law.invention
03 medical and health sciences
Transverse plane
0302 clinical medicine
Nuclear magnetic resonance
Electromagnetic coil
law
030220 oncology & carcinogenesis
Shielded cable
medicine
Electronic circuit
Biomedical engineering
Radiofrequency coil
Subjects
Details
- ISSN :
- 10907807
- Volume :
- 283
- Database :
- OpenAIRE
- Journal :
- Journal of Magnetic Resonance
- Accession number :
- edsair.doi.dedup.....addf8d01dfe0e70c7bef71d55f236e61