Purpose: The quality assurance (QA) procedures in particle therapy centers with active beam scanning make extensive use of films, which do not provide immediate results. The purpose of this work is to verify whether the 2D MatriXX detector by IBA Dosimetry has enough sensitivity to replace films in some of the measurements. Methods: MatriXX is a commercial detector composed of 32 32 parallel plate ionization chambers designed for pre-treatment dose verification in conventional radiation therapy. The detector and GAFCHROMIC films were exposed simultaneously to a 131.44 MeV proton and a 221.45 MeV/u carbon-ion therapeutic beam at the CNAO therapy center of Pavia – Italy, and the results were analyzed and compared. Results: The sensi...
Scanned ion beam delivery promises superior flexibility and accuracy for highly conformal tumour the...
Background and purpose: The novel MatriXXFFF (IBA Dosimetry, Germany) detector is a new 2D ionizatio...
At National Institute of Radiological Sciences (NIRS), we have been commissioning a rotating-gantry ...
AimThis study focused on evaluating the sensitivity of integral quality monitoring (IQM®) system and...
Purpose: To describe the dosimetric commissioning and quality assurance (QA) of the actively scanned...
For pre-treatment plan verification of advanced treatment techniques such as intensity-modulated arc...
For the quality assurance (QA) of therapeutic scanned carbon-ion beams, QA tool having high spatial ...
Purpose: To develop and characterize the required detectors for uniform scanning optimization and ch...
The use of proton and carbon ion beams in cancer therapy (also known as hadron therapy) is progressi...
Since carbon ion deposits most of their energy in the last final millimeters of their trajectory, th...
PURPOSE: To implement a single set-up monthly QA procedure for 9 different beam parameters at differ...
For quality assurance (QA) of therapeutic ion beams, QA tool having high spatial resolution and quic...
Every radiotherapy center has to be equipped with real-time beam monitoring devices. In 2008, the me...
Purpose: The introduction of advanced treatment techniques in proton therapy, such as intensity-modu...
Purpose: The main purpose of this work is the inter-comparison between different devices devoted to ...
Scanned ion beam delivery promises superior flexibility and accuracy for highly conformal tumour the...
Background and purpose: The novel MatriXXFFF (IBA Dosimetry, Germany) detector is a new 2D ionizatio...
At National Institute of Radiological Sciences (NIRS), we have been commissioning a rotating-gantry ...
AimThis study focused on evaluating the sensitivity of integral quality monitoring (IQM®) system and...
Purpose: To describe the dosimetric commissioning and quality assurance (QA) of the actively scanned...
For pre-treatment plan verification of advanced treatment techniques such as intensity-modulated arc...
For the quality assurance (QA) of therapeutic scanned carbon-ion beams, QA tool having high spatial ...
Purpose: To develop and characterize the required detectors for uniform scanning optimization and ch...
The use of proton and carbon ion beams in cancer therapy (also known as hadron therapy) is progressi...
Since carbon ion deposits most of their energy in the last final millimeters of their trajectory, th...
PURPOSE: To implement a single set-up monthly QA procedure for 9 different beam parameters at differ...
For quality assurance (QA) of therapeutic ion beams, QA tool having high spatial resolution and quic...
Every radiotherapy center has to be equipped with real-time beam monitoring devices. In 2008, the me...
Purpose: The introduction of advanced treatment techniques in proton therapy, such as intensity-modu...
Purpose: The main purpose of this work is the inter-comparison between different devices devoted to ...
Scanned ion beam delivery promises superior flexibility and accuracy for highly conformal tumour the...
Background and purpose: The novel MatriXXFFF (IBA Dosimetry, Germany) detector is a new 2D ionizatio...
At National Institute of Radiological Sciences (NIRS), we have been commissioning a rotating-gantry ...