Azeotropic distillation is typically required to achieve fluorine-18 radiolabeling during the production of positron emission tomography (PET) imaging agents. However, this time-consuming process also limits fluorine-18 incorporation, due to radioactive decay of the isotope and its adsorption to the drying vessel. In addressing these limitations, the fluorine-18 radiolabeling of one model rhenium(I) complex is reported here, which is significantly improved under conditions that do not require azeotropic drying. This work could open a route towards the investigation of a simplified metal-mediated late-stage radiofluorination method, which would expand upon the accessibility of new PET and PET-optical probes
Efficient aliphatic radiofluorination in a mixed organic solvent system was investigated. This metho...
Chapter 1 – Introduction briefly introduces the fundamental principles of positron emission tomograp...
Positron emission tomography (PET) is a powerful scientific and clinical tool for the study and visu...
Azeotropic distillation is typically required to achieve fluorine-18 radiolabeling during the produc...
Novel fluorine-18 labelled luminescent rhenium tricarbonyl complexes were synthesised to test their ...
The expansion of [18F]-radiolabelling methodologies is vital for the advancement of Positron Emissio...
Molecular imaging is a technique that can be used to visualize complex biochemical processes without...
Positron emission tomography (PET) is an in vivo imaging technology that utilizes positron-emitting ...
Positron emission tomography (PET) has become an invaluable tool for drug discovery and diagnosis. T...
Background: In the last decade, several strategies emerged for the 18F-fluorination of arenes not am...
Positron emission tomography (PET) is a powerful medical diagnostics and research tool that uses rad...
The unnatural isotope fluorine-18 \((^{18}F)\) is used as a positron emitter in molecular imaging. C...
This thesis describes the development of novel radiochemistry using fluorine-18 and its subsequent a...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/90272/1/1106_ftp.pd
The ability to radiolabel proteins with [18F]fluoride enables the use of positron emission tomograph...
Efficient aliphatic radiofluorination in a mixed organic solvent system was investigated. This metho...
Chapter 1 – Introduction briefly introduces the fundamental principles of positron emission tomograp...
Positron emission tomography (PET) is a powerful scientific and clinical tool for the study and visu...
Azeotropic distillation is typically required to achieve fluorine-18 radiolabeling during the produc...
Novel fluorine-18 labelled luminescent rhenium tricarbonyl complexes were synthesised to test their ...
The expansion of [18F]-radiolabelling methodologies is vital for the advancement of Positron Emissio...
Molecular imaging is a technique that can be used to visualize complex biochemical processes without...
Positron emission tomography (PET) is an in vivo imaging technology that utilizes positron-emitting ...
Positron emission tomography (PET) has become an invaluable tool for drug discovery and diagnosis. T...
Background: In the last decade, several strategies emerged for the 18F-fluorination of arenes not am...
Positron emission tomography (PET) is a powerful medical diagnostics and research tool that uses rad...
The unnatural isotope fluorine-18 \((^{18}F)\) is used as a positron emitter in molecular imaging. C...
This thesis describes the development of novel radiochemistry using fluorine-18 and its subsequent a...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/90272/1/1106_ftp.pd
The ability to radiolabel proteins with [18F]fluoride enables the use of positron emission tomograph...
Efficient aliphatic radiofluorination in a mixed organic solvent system was investigated. This metho...
Chapter 1 – Introduction briefly introduces the fundamental principles of positron emission tomograp...
Positron emission tomography (PET) is a powerful scientific and clinical tool for the study and visu...