In the field of radiooncological research, individualised therapy is one of the hot topics at the moment. As a key aspect biologically-adapted therapy is discussed. Therapy adaption based on biological parameters may include tomographic imaging to determine biological properties of the tumour. One often invoked imaging modality is positron emission tomography (PET) using the tracer [18F]-fluoromisonidazole (FMISO) for hypoxia imaging. Hypoxia imaging is of interest, because hypoxic tumours are known to be radiorestistant. Even further, patients with hypoxic tumours have worse prognosis compared to patients with normoxic tumours. Thus, hypoxia imaging appears promising for radiotherapy treatment adaption. For example, volumetric analysis of ...
Positron emission tomography can be used in radiation oncology for the delineation of target volumes...
Recent developments in statistical image analysis and machine learning are culminating towards devel...
Abstract—This paper shows new resutls of our artificial evolution algorithm for positron emission to...
Positron Emission Tomography (PET) imaging has an enormous potential to improve radiation therapy tr...
Tumor functional volume (FV) and its mean activity concentration (mAC) are the quantities derived fr...
International audiencePURPOSE: Accurate contouring of positron emission tomography (PET) functional ...
Background: The aim of the present study is to evaluate the reliability of a 18F-Fluorodeoxyglucose ...
Positron emission tomography (PET) provides important additional information when applied in radiati...
Quantitative image analysis has deep roots in the usage of positron emission tomography (PET) in cli...
Aim: The purpose of this study was to locate the levels of hypoxia in glioblastoma PET images measur...
Target volume delineation of Positron Emission Tomography (PET) images in radiation treatment planni...
Historically, anatomical CT and MR images were used to delineate the gross tumour volumes (GTVs) for...
Robust tumor activity quantification recently finds application in challenging medical scenarios lik...
Automatic segmentation of tumours using Positron Emission Tomography (PET) was recommended ...
<p>The use of positron emission tomography (PET) in radiation therapy has continued to grow, especia...
Positron emission tomography can be used in radiation oncology for the delineation of target volumes...
Recent developments in statistical image analysis and machine learning are culminating towards devel...
Abstract—This paper shows new resutls of our artificial evolution algorithm for positron emission to...
Positron Emission Tomography (PET) imaging has an enormous potential to improve radiation therapy tr...
Tumor functional volume (FV) and its mean activity concentration (mAC) are the quantities derived fr...
International audiencePURPOSE: Accurate contouring of positron emission tomography (PET) functional ...
Background: The aim of the present study is to evaluate the reliability of a 18F-Fluorodeoxyglucose ...
Positron emission tomography (PET) provides important additional information when applied in radiati...
Quantitative image analysis has deep roots in the usage of positron emission tomography (PET) in cli...
Aim: The purpose of this study was to locate the levels of hypoxia in glioblastoma PET images measur...
Target volume delineation of Positron Emission Tomography (PET) images in radiation treatment planni...
Historically, anatomical CT and MR images were used to delineate the gross tumour volumes (GTVs) for...
Robust tumor activity quantification recently finds application in challenging medical scenarios lik...
Automatic segmentation of tumours using Positron Emission Tomography (PET) was recommended ...
<p>The use of positron emission tomography (PET) in radiation therapy has continued to grow, especia...
Positron emission tomography can be used in radiation oncology for the delineation of target volumes...
Recent developments in statistical image analysis and machine learning are culminating towards devel...
Abstract—This paper shows new resutls of our artificial evolution algorithm for positron emission to...