AIM: The hard beta and gamma radiation of 124I can cause high doses to PET/CT workers. In this study we tried to quantify this occupational exposure and to optimize radioprotection. METHODS: Thin MCP-Ns thermoluminescent dosimeters suitable for measuring beta and gamma radiation were used for extremity dosimetry, active personal dosimeters for whole-body dosimetry. Extremity doses were determined during dispensing of 124I and oral administration of the activity to the patient, the body dose during all phases of the PET/CT procedure. In addition, dose rates of vials and syringes as used in clinical practice were measured. The procedure for dispensing 124I was optimized using newly developed shielding. RESULTS: Skin dose rates up to 100 mSv/m...
The positron emission tomography (PET)/computed tomography (CT) camera is a combination of a PET cam...
The objective of this work was to evaluate radiation doses delivered to technologists engaged in dif...
Purpose: (1) To verify the accuracy and linearity of the ThermoScientific RadEye G Personal Rate Met...
AIM: The hard beta and gamma radiation of 124I can cause high doses to PET/CT workers. In this study...
Introduction: Although the use of Ga-68 has increased substantially in nuclear medicine over the las...
Positron Emission Tomography (PET) is considered as the fastest expanding diagnostic imaging system ...
The purpose of this work is to evaluate the radiation exposure to nuclear medicine (NM) staff in the...
IntroductionThe purpose of this two--folded quantitative study was to determine the radiation doses ...
Positron Emission Tomography-Computed Tomography (PET/CT) has emerged as an early diagnosis and stag...
International audience18-FDG PET is more and more developing in oncology. The 511 keV energy of the ...
Background: F18-PET/CT technique has been permanently optimized to ensure the best accuracy and to e...
Nuclear medicine technicians would receive unavoidable exposures during the preparation and administ...
International audienceIntroduction: Medical research in PET/CT diagnosis involving new gallium-68 ra...
The positron emission tomography (PET)/computed tomography (CT) camera is a combination of a PET cam...
The objective of this work was to evaluate radiation doses delivered to technologists engaged in dif...
Purpose: (1) To verify the accuracy and linearity of the ThermoScientific RadEye G Personal Rate Met...
AIM: The hard beta and gamma radiation of 124I can cause high doses to PET/CT workers. In this study...
Introduction: Although the use of Ga-68 has increased substantially in nuclear medicine over the las...
Positron Emission Tomography (PET) is considered as the fastest expanding diagnostic imaging system ...
The purpose of this work is to evaluate the radiation exposure to nuclear medicine (NM) staff in the...
IntroductionThe purpose of this two--folded quantitative study was to determine the radiation doses ...
Positron Emission Tomography-Computed Tomography (PET/CT) has emerged as an early diagnosis and stag...
International audience18-FDG PET is more and more developing in oncology. The 511 keV energy of the ...
Background: F18-PET/CT technique has been permanently optimized to ensure the best accuracy and to e...
Nuclear medicine technicians would receive unavoidable exposures during the preparation and administ...
International audienceIntroduction: Medical research in PET/CT diagnosis involving new gallium-68 ra...
The positron emission tomography (PET)/computed tomography (CT) camera is a combination of a PET cam...
The objective of this work was to evaluate radiation doses delivered to technologists engaged in dif...
Purpose: (1) To verify the accuracy and linearity of the ThermoScientific RadEye G Personal Rate Met...