Using [¹⁵O]-water pet it is possible to estimate tumour vascular physiological parameters including blood flow and the volume of distribution of water. My project investigated the way in which vascular physiology could be modified by anticancer treatments of (1) cytostatic and (2) cytotoxic nature. This thesis reports a series of studies using positron emission tomography (pet) and water labelled with radioactive oxygen-15. I also report some results with the tracers [¹⁵O]-carbon monoxide, [¹¹c]-thymidine and [11c]-bicarbonate. In practice, the studies revealed unanticipated potential for error in the methods used. Therefore this thesis has focused in large part on quality assurance of [¹⁵O]-water pet methods as used by the clinician resear...
PETmolecular imaging of 15O-labeled water is the gold standard for measuring blood flow in humans. H...
Positron Emission Tomography (PET) is an exciting modality, still in the early stages of general cli...
Positoron emission tomography(PET) is a functional imaging modality that can non-invasively visualiz...
International audienceThe evaluation of drug pharmacodynamics and early tumour response are integral...
Noninvasive methods for quantifying tumor blood flow (TBF) have a potentially important role in the ...
Quantification of tumor perfusion using radioactive water (H215O) and PET is a promising method for ...
Positron Emission Tomography (PET) is a radiotracer imaging technique, in which tracer compounds lab...
PET and 15O-labeled water (H215O) can be used to noninvasively monitor tumor perfusion. This allows ...
The human brain receives approximately 15 % of the cardiac output and therefore is the most demandin...
First the principles of Positron Emission Tomography (PET) are described. PET is one of the nuclear ...
Objective. The biological washout of positron emitters should be modeled and corrected in order to a...
Positron Emission Tomography (PET) is a method for measuring biochemical and physiological processes...
Positron Emission Tomography (PET) is an imaging modality which can determine biochemical and physio...
PETmolecular imaging of 15O-labeled water is the gold standard for measuring blood flow in humans. H...
Positron Emission Tomography (PET) is an exciting modality, still in the early stages of general cli...
Positoron emission tomography(PET) is a functional imaging modality that can non-invasively visualiz...
International audienceThe evaluation of drug pharmacodynamics and early tumour response are integral...
Noninvasive methods for quantifying tumor blood flow (TBF) have a potentially important role in the ...
Quantification of tumor perfusion using radioactive water (H215O) and PET is a promising method for ...
Positron Emission Tomography (PET) is a radiotracer imaging technique, in which tracer compounds lab...
PET and 15O-labeled water (H215O) can be used to noninvasively monitor tumor perfusion. This allows ...
The human brain receives approximately 15 % of the cardiac output and therefore is the most demandin...
First the principles of Positron Emission Tomography (PET) are described. PET is one of the nuclear ...
Objective. The biological washout of positron emitters should be modeled and corrected in order to a...
Positron Emission Tomography (PET) is a method for measuring biochemical and physiological processes...
Positron Emission Tomography (PET) is an imaging modality which can determine biochemical and physio...
PETmolecular imaging of 15O-labeled water is the gold standard for measuring blood flow in humans. H...
Positron Emission Tomography (PET) is an exciting modality, still in the early stages of general cli...
Positoron emission tomography(PET) is a functional imaging modality that can non-invasively visualiz...