OBJECTIVE:The goal of this study was to explore conceptual benefits of characterizing delineated target volumes based on surface area and to utilize the concept for assessing risk of therapeutic toxicity in radiosurgery. METHODS AND MATERIALS:Four computer-generated targets, a sphere, a cylinder, an ellipsoid and a box, were designed for two distinct scenarios. In the first scenario, all targets had identical volumes, and in the second one, all targets had identical surface areas. High quality stereotactic radiosurgery plans with at least 95% target coverage and selectivity were created for each target in both scenarios. Normal brain volumes V12Gy, V14Gy and V16Gy corresponding to received dose of 12 Gy, 14 Gy and 16 Gy, respectively, were ...
Radiation therapy seeks to effectively irradiate the tumor cells while minimizing the dose to adjace...
a b s t r a c t: Objective: To study the impact of target volume changes in brain metastases during...
The use of stereotactic radiosurgery (SRS) employing one or a few fractions of high doses of radiati...
Purpose: This study aims to extend the observation that the 12 Gy-radiosurgical-volume (V12Gy) corre...
<p><b>Background:</b> Although accurate delineation of the target is a key factor of success in radi...
Objective This retrospective study aimed to investigate the impact of CT slice thickness and isotrop...
INTRODUCTION:This study explores the possibility of a relationship between the sphericity degree of ...
OBJECTIVEFor stereotactic radiosurgery (SRS) planning, precise contouring of tumor boundaries and or...
We evaluated the effect of lesion number and volume for brain metastasis treated with SRS using Gamm...
The use of Stereotactic Radiation Therapy (SRT) employing one large fraction of radiation, as in ste...
Purpose/objective: Stereotactic radiosurgery of brain metastases requires highly conformal dose dist...
Background: As irradiated brain volume at 12 Gy (V12) is a predictor for radionecrosis, the purpose ...
Abstract Background Emerging techniques such as brain...
Radiation treatment techniques, such as those used in stereotactic radiosurgery (SRS), have been sho...
Purpose: Mask-immobilized stereotactic radiosurgery (SRS) using a gating window is an emerging techn...
Radiation therapy seeks to effectively irradiate the tumor cells while minimizing the dose to adjace...
a b s t r a c t: Objective: To study the impact of target volume changes in brain metastases during...
The use of stereotactic radiosurgery (SRS) employing one or a few fractions of high doses of radiati...
Purpose: This study aims to extend the observation that the 12 Gy-radiosurgical-volume (V12Gy) corre...
<p><b>Background:</b> Although accurate delineation of the target is a key factor of success in radi...
Objective This retrospective study aimed to investigate the impact of CT slice thickness and isotrop...
INTRODUCTION:This study explores the possibility of a relationship between the sphericity degree of ...
OBJECTIVEFor stereotactic radiosurgery (SRS) planning, precise contouring of tumor boundaries and or...
We evaluated the effect of lesion number and volume for brain metastasis treated with SRS using Gamm...
The use of Stereotactic Radiation Therapy (SRT) employing one large fraction of radiation, as in ste...
Purpose/objective: Stereotactic radiosurgery of brain metastases requires highly conformal dose dist...
Background: As irradiated brain volume at 12 Gy (V12) is a predictor for radionecrosis, the purpose ...
Abstract Background Emerging techniques such as brain...
Radiation treatment techniques, such as those used in stereotactic radiosurgery (SRS), have been sho...
Purpose: Mask-immobilized stereotactic radiosurgery (SRS) using a gating window is an emerging techn...
Radiation therapy seeks to effectively irradiate the tumor cells while minimizing the dose to adjace...
a b s t r a c t: Objective: To study the impact of target volume changes in brain metastases during...
The use of stereotactic radiosurgery (SRS) employing one or a few fractions of high doses of radiati...