Background and purpose: In this retrospective treatment planning study, the effect of a uniform and non-uniform planning target volume (PTV) dose coverage as well as a coplanar and non-coplanar volumetric modulated arc therapy (VMAT) delivery approach for lung stereotactic body radiation therapy (SBRT) in deep inspiration breath-hold (DIBH) were compared. Materials and methods: For 46 patients with lesions in the peripheral lungs, three different treatment plans were generated: First, a coplanar 220° VMAT sequence with a uniform PTV dose prescription (UC). Second, a coplanar 220° VMAT treatment plan with a non-uniform dose distribution in the PTV (nUC). Third, a non-coplanar VMAT dose delivery with four couch angles (0°, ±35°, 90°) and a no...
Purpose: To evaluate the dosimetric potential of respiratory-gated volumetric modulated arc therapy ...
PURPOSE: Volumetric modulated arc therapy (VMAT) is gaining popularity for stereotactic treatment of...
Background: Type-C dose algorithms provide more accurate dosimetry for lung SBRT treatment planning....
Background and purpose: In this retrospective treatment planning study, the effect of a uniform and ...
<b>Introduction</b>\ud \ud - The purpose of this study was to investigate coplanar and non-coplanar...
Abstract Purpose Frequently, three-dimensional (3D) conformal beams are used in lung cancer stereota...
Purpose A retrospective planning study comparing volumetric arc therapy (VMAT) and stereotactic body...
PURPOSE Dose, fractionation, normalization and the dose profile inside the target volume vary sub...
AIMS: The potential advantages of stereotactic body radiotherapy (SBRT) for early stage non-small ce...
Peripheral lung lesions treated with a single fraction of stereotactic ablative body radiotherapy (S...
Background High-dose radiotherapy of lung cancer is challenging. Tumors may move by up to 2 cm in cr...
Aim The objective of the study was to compare three noncoplanar delivery techniques (three-dimension...
Volumetric-modulated arc therapy (VMAT) is increasingly popular as a treatment method in radiotherap...
International audienceBackground:The management of breath-induced tumor motion is a major challenge ...
Introduction: The aim of this study was to compare various coplanar and non-coplanar 3-dimensional c...
Purpose: To evaluate the dosimetric potential of respiratory-gated volumetric modulated arc therapy ...
PURPOSE: Volumetric modulated arc therapy (VMAT) is gaining popularity for stereotactic treatment of...
Background: Type-C dose algorithms provide more accurate dosimetry for lung SBRT treatment planning....
Background and purpose: In this retrospective treatment planning study, the effect of a uniform and ...
<b>Introduction</b>\ud \ud - The purpose of this study was to investigate coplanar and non-coplanar...
Abstract Purpose Frequently, three-dimensional (3D) conformal beams are used in lung cancer stereota...
Purpose A retrospective planning study comparing volumetric arc therapy (VMAT) and stereotactic body...
PURPOSE Dose, fractionation, normalization and the dose profile inside the target volume vary sub...
AIMS: The potential advantages of stereotactic body radiotherapy (SBRT) for early stage non-small ce...
Peripheral lung lesions treated with a single fraction of stereotactic ablative body radiotherapy (S...
Background High-dose radiotherapy of lung cancer is challenging. Tumors may move by up to 2 cm in cr...
Aim The objective of the study was to compare three noncoplanar delivery techniques (three-dimension...
Volumetric-modulated arc therapy (VMAT) is increasingly popular as a treatment method in radiotherap...
International audienceBackground:The management of breath-induced tumor motion is a major challenge ...
Introduction: The aim of this study was to compare various coplanar and non-coplanar 3-dimensional c...
Purpose: To evaluate the dosimetric potential of respiratory-gated volumetric modulated arc therapy ...
PURPOSE: Volumetric modulated arc therapy (VMAT) is gaining popularity for stereotactic treatment of...
Background: Type-C dose algorithms provide more accurate dosimetry for lung SBRT treatment planning....