Fluorescent nuclear track detectors based on Al2O3:C,Mg with their excellent efficiency for detection of heavy charged particles and full 3D information from laser scanning microscopy allow a multitude of issues related to ion-beam cancer therapy to be tackled. A recently established read out protocol enables the utilization of a commercial microscope similar to those available in many life-science environments. This contribution illustrates the approach, its potential and limitations, as well as applications in clinical ion beams
We have developed various type radiation detectors and measured radiation dose with them in various ...
Structured illumination microscopy (SIM) for the imaging of alpha particle tracks in fluorescent nuc...
Scope and Method of Study: The goal of this work was to develop and demonstrate a 2D dosimetry syste...
Originally designed for optical storage, fluorescent nuclear track detectors (FNTD) based on single ...
Fluorescent nuclear track detectors (FNTDs) show excellent detection properties for heavy charged pa...
A new optical, non-destructive method of detecting and imaging individual heavy charged particle tra...
Novel fluorescent nuclear track detectors (FNTDs) are based on single aluminum oxide crystals doped ...
A new optical, non-destructive method of detecting and imaging individual heavy charged particle tra...
The latest advances in the development of a fluorescent nuclear track detector (FNTD) for neutron an...
In this paper we report about the demonstration of the nuclear track imaging capabilities of Ag-acti...
Ion beam therapy continues attracting attention for cancer treatment as compared to conventional rad...
Fluorescent Nuclear Track Detector technology is a passive luminescent integrating detector technolo...
Background: The lack of sensitive biocompatible particle track detectors has so far limited parallel...
Carbon ion radiotherapy offers conformal dose coverage of deep-seated tumors and an enhanced radiobi...
In heavy ion therapy, precise knowledge of fluence, energy and particle type is necessary for an ade...
We have developed various type radiation detectors and measured radiation dose with them in various ...
Structured illumination microscopy (SIM) for the imaging of alpha particle tracks in fluorescent nuc...
Scope and Method of Study: The goal of this work was to develop and demonstrate a 2D dosimetry syste...
Originally designed for optical storage, fluorescent nuclear track detectors (FNTD) based on single ...
Fluorescent nuclear track detectors (FNTDs) show excellent detection properties for heavy charged pa...
A new optical, non-destructive method of detecting and imaging individual heavy charged particle tra...
Novel fluorescent nuclear track detectors (FNTDs) are based on single aluminum oxide crystals doped ...
A new optical, non-destructive method of detecting and imaging individual heavy charged particle tra...
The latest advances in the development of a fluorescent nuclear track detector (FNTD) for neutron an...
In this paper we report about the demonstration of the nuclear track imaging capabilities of Ag-acti...
Ion beam therapy continues attracting attention for cancer treatment as compared to conventional rad...
Fluorescent Nuclear Track Detector technology is a passive luminescent integrating detector technolo...
Background: The lack of sensitive biocompatible particle track detectors has so far limited parallel...
Carbon ion radiotherapy offers conformal dose coverage of deep-seated tumors and an enhanced radiobi...
In heavy ion therapy, precise knowledge of fluence, energy and particle type is necessary for an ade...
We have developed various type radiation detectors and measured radiation dose with them in various ...
Structured illumination microscopy (SIM) for the imaging of alpha particle tracks in fluorescent nuc...
Scope and Method of Study: The goal of this work was to develop and demonstrate a 2D dosimetry syste...