Matches in SemOpenAlex for { <https://semopenalex.org/work/W3012428723> ?p ?o ?g. }
- W3012428723 endingPage "313" @default.
- W3012428723 startingPage "303" @default.
- W3012428723 abstract "Sharp dose gradients between the target and the spinal cord are critical to achieve dose constraints in spine stereotactic radiosurgery (SRS), however the accuracy of the doses to the spinal cord at these high dose gradients is sensitive to the how the dose is sampled across the structure using a discretized isotropic calculation grid. In this study, the effect of the grid size (GS) on the dosimetric accuracy of volumetric modulated arc therapy (VMAT) spine SRS plans was investigated.The Eclipse v11.0 Anisotropic Analytical Algorithm (AAA) algorithm was used for dose calculation. Plan qualities of fifty treatment plans were evaluated with a GS of 2.5 (AAA's default value), 1.5 and 1mm. All plans were prescribed to the 90% isodose line in 1 fraction. Parameters used for plan comparison included the distance-to-fall-off (DTF) between the 90% and 50% isodose levels in the axial plane, planning tumor volume (PTV) coverage to 99%, 95%, 5% and 0.03cc, dose to 10% (Cord_D10%) and 0.03cc (Cord_D0.03cc) of the spinal cord sub volume. The dosimetric accuracy was evaluated based on film dosimetry percent gamma pass rate, line profile through the cord. Calculation times between different grid sizes as well as DVH algorithm differences between two treatment planning systems (Eclipse vs Velocity) were compared. Paired t-test was used to investigate the statistical significance.The DTF decreased for all plans with 1mm compared to 1.5mm and 2.5mm GS (2.52±0.54mm, 2.83±0.58mm, 3.30±0.64, p<0.001). Relative to the 1mm GS, Cord_D0.03cc and Cord_D10% increased by 6.24% and 7.81% with the 1.5mm GS, and 9.80% and 13% with the 2.5mm GS. Film analysis demonstrated higher gamma pass rates for 1.5mm GS compared to 1 and 2.5mm GS (95.9%±5.4%, 94.3%±6.0%, 93.6%±5.4%, p<0.001), however 1mm GS showed better agreement in the high dose gradient near the cord. Calculation times for 1mm GS plans increased for 1.5 and 2.5mm GS (61% and 84%, p<0.001). The average difference between the two treatment planning systems was approximately 0-1.2%. A maximum difference of 5.9% occurred for Cord_D0.03cc for the 1mm GS.Plans calculated with a 1mm grid size resulted in the most accurate representation of the dose delivered to the cord, however resulted in less uniform dose distributions in the high dose region of the PTV. The use of a 1.5mm grid size may balance accurate cord dose and PTV coverage, while also being more practical with respect to computation time." @default.
- W3012428723 created "2020-03-23" @default.
- W3012428723 creator A5004087303 @default.
- W3012428723 creator A5004147761 @default.
- W3012428723 creator A5029060394 @default.
- W3012428723 creator A5037667861 @default.
- W3012428723 creator A5055214758 @default.
- W3012428723 creator A5064839560 @default.
- W3012428723 creator A5064900184 @default.
- W3012428723 date "2017-01-01" @default.
- W3012428723 modified "2023-09-25" @default.
- W3012428723 title "Investigating the dosimetric effects of grid size on dose calculation accuracy using volumetric modulated arc therapy in spine stereotactic radiosurgery." @default.
- W3012428723 cites W1963650567 @default.
- W3012428723 cites W1967121735 @default.
- W3012428723 cites W1977291071 @default.
- W3012428723 cites W1977933325 @default.
- W3012428723 cites W1981830627 @default.
- W3012428723 cites W1988227247 @default.
- W3012428723 cites W2001456707 @default.
- W3012428723 cites W2009446412 @default.
- W3012428723 cites W2010283913 @default.
- W3012428723 cites W2023602419 @default.
- W3012428723 cites W2029458214 @default.
- W3012428723 cites W2048763459 @default.
- W3012428723 cites W2057946775 @default.
- W3012428723 cites W2066913754 @default.
- W3012428723 cites W2072135927 @default.
- W3012428723 cites W2074556771 @default.
- W3012428723 cites W2077080208 @default.
- W3012428723 cites W2086517835 @default.
- W3012428723 cites W2091387599 @default.
- W3012428723 cites W2102291314 @default.
- W3012428723 cites W2119964994 @default.
- W3012428723 cites W2154311744 @default.
- W3012428723 cites W2165018237 @default.
- W3012428723 cites W2302365559 @default.
- W3012428723 cites W2342728826 @default.
- W3012428723 cites W2528134880 @default.
- W3012428723 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/5658825" @default.
- W3012428723 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/29296454" @default.
- W3012428723 hasPublicationYear "2017" @default.
- W3012428723 type Work @default.
- W3012428723 sameAs 3012428723 @default.
- W3012428723 citedByCount "6" @default.
- W3012428723 countsByYear W30124287232019 @default.
- W3012428723 countsByYear W30124287232022 @default.
- W3012428723 countsByYear W30124287232023 @default.
- W3012428723 crossrefType "journal-article" @default.
- W3012428723 hasAuthorship W3012428723A5004087303 @default.
- W3012428723 hasAuthorship W3012428723A5004147761 @default.
- W3012428723 hasAuthorship W3012428723A5029060394 @default.
- W3012428723 hasAuthorship W3012428723A5037667861 @default.
- W3012428723 hasAuthorship W3012428723A5055214758 @default.
- W3012428723 hasAuthorship W3012428723A5064839560 @default.
- W3012428723 hasAuthorship W3012428723A5064900184 @default.
- W3012428723 hasConcept C118552586 @default.
- W3012428723 hasConcept C126838900 @default.
- W3012428723 hasConcept C201645570 @default.
- W3012428723 hasConcept C2524010 @default.
- W3012428723 hasConcept C2780387249 @default.
- W3012428723 hasConcept C2780775167 @default.
- W3012428723 hasConcept C2989005 @default.
- W3012428723 hasConcept C33923547 @default.
- W3012428723 hasConcept C509974204 @default.
- W3012428723 hasConcept C71924100 @default.
- W3012428723 hasConcept C75088862 @default.
- W3012428723 hasConcept C83415579 @default.
- W3012428723 hasConceptScore W3012428723C118552586 @default.
- W3012428723 hasConceptScore W3012428723C126838900 @default.
- W3012428723 hasConceptScore W3012428723C201645570 @default.
- W3012428723 hasConceptScore W3012428723C2524010 @default.
- W3012428723 hasConceptScore W3012428723C2780387249 @default.
- W3012428723 hasConceptScore W3012428723C2780775167 @default.
- W3012428723 hasConceptScore W3012428723C2989005 @default.
- W3012428723 hasConceptScore W3012428723C33923547 @default.
- W3012428723 hasConceptScore W3012428723C509974204 @default.
- W3012428723 hasConceptScore W3012428723C71924100 @default.
- W3012428723 hasConceptScore W3012428723C75088862 @default.
- W3012428723 hasConceptScore W3012428723C83415579 @default.
- W3012428723 hasIssue "4" @default.
- W3012428723 hasLocation W30124287231 @default.
- W3012428723 hasOpenAccess W3012428723 @default.
- W3012428723 hasPrimaryLocation W30124287231 @default.
- W3012428723 hasRelatedWork W1000633033 @default.
- W3012428723 hasRelatedWork W1163825299 @default.
- W3012428723 hasRelatedWork W1969102649 @default.
- W3012428723 hasRelatedWork W1977678808 @default.
- W3012428723 hasRelatedWork W1985984122 @default.
- W3012428723 hasRelatedWork W1993192413 @default.
- W3012428723 hasRelatedWork W2015732711 @default.
- W3012428723 hasRelatedWork W2031822862 @default.
- W3012428723 hasRelatedWork W2033997507 @default.
- W3012428723 hasRelatedWork W2038459637 @default.
- W3012428723 hasRelatedWork W2044882825 @default.
- W3012428723 hasRelatedWork W2051373888 @default.
- W3012428723 hasRelatedWork W2085603954 @default.
- W3012428723 hasRelatedWork W2361592507 @default.
- W3012428723 hasRelatedWork W2465755922 @default.