Proton therapy has a distinct dosimetric advantage over conventional photon therapy due to its Bragg peak profile. This allows greater accuracy in dose delivery and dose conformation to the target, however it requires greater precision in setup, delivery and for quality assurance (QA) procedures. The AAPM TG 224 report recommends daily range and spot position checks with tolerance on the order of a millimetre. Daily QA systems must therefore be efficient for daily use and be capable of sub-millimetre precision however few suitable commercial systems are available. In this work, a compact, real-time daily QA system is optimised and characterised for proton range verification using an ad-hoc Geant4 simulation. The system is comprised of a mon...
Background and purpose: Although proton therapy is becoming increasingly common as a radiotherapy mo...
Proton therapy exploits proton interactions with matter to treat deep seated tumors with a highly co...
Background and purpose: To improve precision of particle therapy, in vivo range verification is high...
A Geant4 Monte Carlo simulation study was carried out to characterise a novel silicon strip detector...
The purpose of this work was to develop an end-to-end patient-specific quality assurance (QA) techni...
PURPOSE: To implement a single set-up monthly QA procedure for 9 different beam parameters at differ...
The advanced imaging and delivery techniques in proton therapy allow conformal high-dose irradiation...
As technology continues to develop, external beam radiation therapy is being employed, with increase...
The characterisation of a novel multi-strip silicon detector, the serial Dose Magnifying Glass, to i...
The thesis focuses on development and clinical implementation of comprehensive and overlaying qualit...
PURPOSE Wedge phantoms coupled with a CCD camera are suggested as a simple means to improve the e...
An intensity-modulated proton therapy (IMPT) patient-specific quality assurance (PSQA) program based...
Compared to photon therapy, proton therapy allows a better conformation of the dose to the tumor vol...
Independent dose verification with Monte Carlo (MC) simulations is an important feature of proton th...
Background: The beam energy is one of the most significant parameters in particle therapy since it i...
Background and purpose: Although proton therapy is becoming increasingly common as a radiotherapy mo...
Proton therapy exploits proton interactions with matter to treat deep seated tumors with a highly co...
Background and purpose: To improve precision of particle therapy, in vivo range verification is high...
A Geant4 Monte Carlo simulation study was carried out to characterise a novel silicon strip detector...
The purpose of this work was to develop an end-to-end patient-specific quality assurance (QA) techni...
PURPOSE: To implement a single set-up monthly QA procedure for 9 different beam parameters at differ...
The advanced imaging and delivery techniques in proton therapy allow conformal high-dose irradiation...
As technology continues to develop, external beam radiation therapy is being employed, with increase...
The characterisation of a novel multi-strip silicon detector, the serial Dose Magnifying Glass, to i...
The thesis focuses on development and clinical implementation of comprehensive and overlaying qualit...
PURPOSE Wedge phantoms coupled with a CCD camera are suggested as a simple means to improve the e...
An intensity-modulated proton therapy (IMPT) patient-specific quality assurance (PSQA) program based...
Compared to photon therapy, proton therapy allows a better conformation of the dose to the tumor vol...
Independent dose verification with Monte Carlo (MC) simulations is an important feature of proton th...
Background: The beam energy is one of the most significant parameters in particle therapy since it i...
Background and purpose: Although proton therapy is becoming increasingly common as a radiotherapy mo...
Proton therapy exploits proton interactions with matter to treat deep seated tumors with a highly co...
Background and purpose: To improve precision of particle therapy, in vivo range verification is high...