Title of article :
Characterization of a commercial multileaf collimator used for intensity modulated radiation therapy
Author/Authors :
Markman، Jerry نويسنده , , Dempsey، James F. نويسنده , , Low، Daniel A. نويسنده , , Sohn، Jason W. نويسنده , , Klein، Eric E. نويسنده , , Mutic، Sasa نويسنده ,
Issue Information :
فصلنامه با شماره پیاپی سال 2016
Pages :
-751
From page :
752
To page :
0
Abstract :
he characteristics of a commercial multileaf collimator (MLC) to deliver static and dynamic multileaf collimation (SMLC and DMLC, respectively) were investigated to determine their influence on intensity modulated radiation therapy (IMRT) treatment planning and quality assurance. The influence of MLC leaf positioning accuracy on sequentially abutted SMLC fields was measured by creating abutting fields with selected gaps and overlaps. These data were also used to measure static leaf positioning precision. The characteristics of high leaf-velocity DMLC delivery were measured with constant velocity leaf sequences starting with an open field and closing a single leaf bank. A range of 1-72 monitor units (MU) was used providing a range of leaf velocities. The field abutment measurements yielded dose errors (as a percentage of the open field max dose) of 16.7±0.7% mm-1 and 12.8±0.7% mm-1 for 6 MV and 18 MV photon beams, respectively. The MLC leaf positioning precision was 0.080±0.018 mm (single standard deviation) highlighting the excellent delivery hardware tolerances for the tested beam delivery geometry. The high leaf-velocity DMLC measurements showed delivery artifacts when the leaf sequence and selected monitor units caused the linear accelerator to move the leaves at their maximum velocity while modulating the accelerator dose rate to deliver the desired leaf and MU sequence (termed leaf-velocity limited delivery). According to the vendor, a unique feature to their linear accelerator and MLC is that the dose rate is reduced to provide the correct cm MU-1 leaf velocity when the delivery is leaf-velocity limited.
Keywords :
short circuit current , Fault current limiter , power quality , transient over voltage
Journal title :
MEDICAL PHYSICS
Serial Year :
2001
Journal title :
MEDICAL PHYSICS
Record number :
1569
Link To Document :
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