Application of microfluidics to Positron Emission Tomography (PET) tracer synthesis has attracted increasing interest within the last decade. The technical advantages of microfluidics, in particular the high surface to volume ratio and resulting fast thermal heating and cooling rates of reagents can lead to reduced reaction times, increased synthesis yields and reduced by-products. In addition automated reaction optimization, reduced consumption of expensive reagents and a path towards a reduced system footprint have been successfully demonstrated. The processing of radioactivity levels required for routine production, use of microfluidic-produced PET tracer doses in preclinical and clinical imaging as well as feasibility studies on autorad...
Radiopharmaceuticals labeled with short-lived positron-emitting or gamma-emitting isotopes are injec...
An integrated elastomeric microfluidic device, with a footprint the size of a postage stamp, has bee...
Copyright © 2013 Yang Liu et al.This is an open access article distributed under the Creative Common...
Application of microfluidics to Positron Emission Tomography ( PET) tracer synthesis has attracted i...
Positon emission tomography (PET) is an imaging modality capable of visualizing biomolecules in vivo...
The increasing diversity of, and demand for, PET radiotracers have stimulated development of emergin...
Owing to increased needs for positron emission tomography (PET), high demands for a wide variety of ...
Positron emission tomography (PET) is a highly sensitive non-invasive imaging modality that uses sma...
The emerging technology of digital microfluidics is opening up the possibility of performing radioch...
We present numerical modeling and experimental studies of flow optimization inside a batch microflui...
The increasing use of quantitative imaging in the understanding of the pathophysiological processes,...
The application of microfluidics to the synthesis of Positron Emission Tomography (PET) tracers has ...
Radiopharmaceuticals labeled with short-lived positron-emitting or gamma-emitting isotopes are injec...
An integrated elastomeric microfluidic device, with a footprint the size of a postage stamp, has bee...
Copyright © 2013 Yang Liu et al.This is an open access article distributed under the Creative Common...
Application of microfluidics to Positron Emission Tomography ( PET) tracer synthesis has attracted i...
Positon emission tomography (PET) is an imaging modality capable of visualizing biomolecules in vivo...
The increasing diversity of, and demand for, PET radiotracers have stimulated development of emergin...
Owing to increased needs for positron emission tomography (PET), high demands for a wide variety of ...
Positron emission tomography (PET) is a highly sensitive non-invasive imaging modality that uses sma...
The emerging technology of digital microfluidics is opening up the possibility of performing radioch...
We present numerical modeling and experimental studies of flow optimization inside a batch microflui...
The increasing use of quantitative imaging in the understanding of the pathophysiological processes,...
The application of microfluidics to the synthesis of Positron Emission Tomography (PET) tracers has ...
Radiopharmaceuticals labeled with short-lived positron-emitting or gamma-emitting isotopes are injec...
An integrated elastomeric microfluidic device, with a footprint the size of a postage stamp, has bee...
Copyright © 2013 Yang Liu et al.This is an open access article distributed under the Creative Common...