Introduction The goal of this work is to advance the production and use of 52Mn (t½ = 5.6 d, β+: 242 keV, 29.6%) as a radioisotope for in vivo preclinical nuclear imaging. More specifically, the aims of this study were: (1) to measure the excitation function for the natCr(p,n)52Mn reaction at low energies to verify past results [1–4]; (2) to measure binding constants of Mn(II) to aid the design of a method for isolation of Mn from an irradiated Cr target via ion-exchange chromatography, building upon previously published methods [1,2,5–7]; and (3) to perform phantom imaging by positron emission tomography/magnetic resonance (PET/MR) imaging with 52Mn and non-radioactive Mn(II), since Mn has potential dual-modality benefits that are beginnin...
Manganese is a magnetic resonance imaging (MRI) contrast agent for small animals that can provide a ...
Objectives: Hybrid PET/MR imaging will pave the way for a better understanding of physiological and ...
Research on contrast agents for MRI increasingly concentrates on paramagnetic MnII complexes as alte...
Introduction The goal of this work is to advance the production and use of 52Mn (t½ = 5.6 d, β+: 242...
Background: Manganese is a paramagnetic element suitable for magnetic resonance imaging (MRI) of neu...
The aim of the ongoing project METRICS (acronym for Multimodal pET/mRI imaging with Cyclotron-produ...
<sup>52</sup>Mn (<i>t</i><sub>1/2</sub> = 5.59 d, β<sup>+</sup> = 29.6%, <i>E</i><sub>βave</sub> = 0...
Introduction 52Mn (t½ =5.59 d, β+ = 29.6%, Eβmax = 0.58 MeV) has great potential as a long lived PET...
Now a day the new frontier of Nuclear Medicine (NM) is the use of artificial radionuclides that pres...
Introduction 52Mn (t½ =5.59 d, β+ = 29.6%, Eβmax = 0.58 MeV) has great potential as a long lived PET...
The aim of the ongoing METRICS project (acronym for Multimodal pET/mRI imaging with Cyclotron-prod...
licenses/by-nc-nd/3.0/). Reproduction is permitted for personal, noncommercial use, provided that th...
International audienceThe positron emitter 52g Mn is used for the Positron Emission Tomography - PET...
Manganese-52 is a radionuclide which decays with positron emission and electron capture, with a medi...
Manganese is a magnetic resonance imaging (MRI) contrast agent for small animals that can provide a ...
Manganese is a magnetic resonance imaging (MRI) contrast agent for small animals that can provide a ...
Objectives: Hybrid PET/MR imaging will pave the way for a better understanding of physiological and ...
Research on contrast agents for MRI increasingly concentrates on paramagnetic MnII complexes as alte...
Introduction The goal of this work is to advance the production and use of 52Mn (t½ = 5.6 d, β+: 242...
Background: Manganese is a paramagnetic element suitable for magnetic resonance imaging (MRI) of neu...
The aim of the ongoing project METRICS (acronym for Multimodal pET/mRI imaging with Cyclotron-produ...
<sup>52</sup>Mn (<i>t</i><sub>1/2</sub> = 5.59 d, β<sup>+</sup> = 29.6%, <i>E</i><sub>βave</sub> = 0...
Introduction 52Mn (t½ =5.59 d, β+ = 29.6%, Eβmax = 0.58 MeV) has great potential as a long lived PET...
Now a day the new frontier of Nuclear Medicine (NM) is the use of artificial radionuclides that pres...
Introduction 52Mn (t½ =5.59 d, β+ = 29.6%, Eβmax = 0.58 MeV) has great potential as a long lived PET...
The aim of the ongoing METRICS project (acronym for Multimodal pET/mRI imaging with Cyclotron-prod...
licenses/by-nc-nd/3.0/). Reproduction is permitted for personal, noncommercial use, provided that th...
International audienceThe positron emitter 52g Mn is used for the Positron Emission Tomography - PET...
Manganese-52 is a radionuclide which decays with positron emission and electron capture, with a medi...
Manganese is a magnetic resonance imaging (MRI) contrast agent for small animals that can provide a ...
Manganese is a magnetic resonance imaging (MRI) contrast agent for small animals that can provide a ...
Objectives: Hybrid PET/MR imaging will pave the way for a better understanding of physiological and ...
Research on contrast agents for MRI increasingly concentrates on paramagnetic MnII complexes as alte...