AIM: To investigate systematic changes in dose arising when treatment plans optimised using the Anisotropic Analytical Algorithm (AAA) are recalculated using Acuros XB (AXB) in patients treated with definitive chemoradiotherapy (dCRT) for locally advanced oesophageal cancers. BACKGROUND: We have compared treatment plans created using AAA with those recalculated using AXB. Although the Anisotropic Analytical Algorithm (AAA) is currently more widely used in clinical routine, Acuros XB (AXB) has been shown to more accurately calculate the dose distribution, particularly in heterogeneous regions. Studies to predict clinical outcome should be based on modelling the dose delivered to the patient as accurately as possible. METHODS: CT datasets fro...
Background: The purpose of this study was to assess dose accuracy improvement and dosimetric impact ...
Purpose: The aim of this work was to assess and to quantify, for clinical practice, the differences ...
There is a concern for dose calculation in highly heterogenous environments such as the thorax regio...
AIM: To investigate systematic changes in dose arising when treatment plans optimised using the Anis...
Our purpose in this study was to assess the dosimetric impact of the Acuros XB algorithm (AXB), in c...
Background: This study aimed to verify the dosimetric impact of Acuros XB (AXB) (AXB, Varian Medical...
BACKGROUND: This study aimed to verify the dosimetric impact of Acuros XB (AXB) (AXB, Varian Medical...
Background: This study aimed to verify the dosimetric impact of Acuros XB (AXB) (AXB, Varian Medical...
algorithm was proved to calculate more accurate doses than the anisotropic analytical algorithm (AAA...
To investigate feasible treatment planning parameters, we aimed to evaluate the dosimetric and radio...
Purpose: The purpose of current study is to investigate the impact of tissue heterogeneity correctio...
Monte Carlo (MC) simulation is currently the most accurate dose calculation algorithm in radiotherap...
International audiencePurpose To assess the dosimetric impact of switching from the Analytical Aniso...
International audiencePurpose To assess the dosimetric impact of switching from the Analytical Aniso...
Background: We clarified the dose difference between the anisotropic analytical algorithm (AAA) and ...
Background: The purpose of this study was to assess dose accuracy improvement and dosimetric impact ...
Purpose: The aim of this work was to assess and to quantify, for clinical practice, the differences ...
There is a concern for dose calculation in highly heterogenous environments such as the thorax regio...
AIM: To investigate systematic changes in dose arising when treatment plans optimised using the Anis...
Our purpose in this study was to assess the dosimetric impact of the Acuros XB algorithm (AXB), in c...
Background: This study aimed to verify the dosimetric impact of Acuros XB (AXB) (AXB, Varian Medical...
BACKGROUND: This study aimed to verify the dosimetric impact of Acuros XB (AXB) (AXB, Varian Medical...
Background: This study aimed to verify the dosimetric impact of Acuros XB (AXB) (AXB, Varian Medical...
algorithm was proved to calculate more accurate doses than the anisotropic analytical algorithm (AAA...
To investigate feasible treatment planning parameters, we aimed to evaluate the dosimetric and radio...
Purpose: The purpose of current study is to investigate the impact of tissue heterogeneity correctio...
Monte Carlo (MC) simulation is currently the most accurate dose calculation algorithm in radiotherap...
International audiencePurpose To assess the dosimetric impact of switching from the Analytical Aniso...
International audiencePurpose To assess the dosimetric impact of switching from the Analytical Aniso...
Background: We clarified the dose difference between the anisotropic analytical algorithm (AAA) and ...
Background: The purpose of this study was to assess dose accuracy improvement and dosimetric impact ...
Purpose: The aim of this work was to assess and to quantify, for clinical practice, the differences ...
There is a concern for dose calculation in highly heterogenous environments such as the thorax regio...