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      <dc:title>Monte Carlo simulation of the dynamic micro-multileaf collimator of a LINAC Elekta Precise using PENELOPE.</dc:title>
      <dc:creator>González-Infantes, Wilfredo</dc:creator>
      <dc:creator>Lallena, Antonio</dc:creator>
      <dc:creator>Alfonso, Rodolfo</dc:creator>
      <dc:subject>Montecarlo, Método de</dc:subject>
      <dc:subject>Aceleradores lineales</dc:subject>
      <dc:description>https://publishingsupport.iopscience.iop.org/questions/what-is-iop-publishings-green-open-access-policy/</dc:description>
      <dc:description>Micro-multileaf collimators are devices that are added to LINAC heads for&#xd;
stereotactic radiosurgery. In this work, the performance of an Elekta Precise LINAC,&#xd;
with a dynamic micro-multileaf collimator manufactured by 3D-Line has been studied.&#xd;
Monte Carlo simulations based on PENELOPE code and measurements with three&#xd;
different detectors (PTW Semiflex 31010 chamber, PTW PinPoint 31016 chamber and&#xd;
PTW Diode 60008) have been carried out. Simulations were tuned by reproducing&#xd;
the experimental TPR20,10 quality index, providing a nice description of both the&#xd;
PDD curve and the transverse profiles at two depths measured. The geometry of the&#xd;
micro-multileaf collimator was tested by calculating the transmission through it and it&#xd;
was needed to reduce significantly the leaf separation indicated by the manufacturer to&#xd;
reproduce the experimental results. An approximate simulation in which the transport&#xd;
of the particles traversing the dynamic micro-multileaf collimator was described in a&#xd;
simplified way was analyzed, providing a good agreement with the full simulations.&#xd;
With the MC model fixed, output factors for various field sizes were calculated and&#xd;
compared to the experimental ones, obtaining a good agreement. PDDs and transverse&#xd;
profiles at two depths measured with the diode for small fields were well reproduced&#xd;
by the simulation, while the measurements performed with the PinPoint chamber&#xd;
showed differences in the PDDs, at large depths, and in the transverse profiles, at the&#xd;
penumbra. Monte Carlo simulations and Semiflex and diode measurements, performed&#xd;
for a 7.0 cm×7.0 cm field, were in nice agreement, while those obtained with the&#xd;
PinPoint chamber showed differences that increased with the depth in water. At&#xd;
the phantom entrance, all measurements showed non-negligible differences what made&#xd;
Monte Carlo a good option to estimate the absorbed dose in this region.</dc:description>
      <dc:date>2025-01-28T08:01:34Z</dc:date>
      <dc:date>2025-01-28T08:01:34Z</dc:date>
      <dc:date>2011-05-13</dc:date>
      <dc:type>journal article</dc:type>
      <dc:identifier>Phys. Med. Biol. 2011. 56 3417</dc:identifier>
      <dc:identifier>https://hdl.handle.net/10630/37130</dc:identifier>
      <dc:identifier>10.1088/0031-9155/56/11/015</dc:identifier>
      <dc:language>eng</dc:language>
      <dc:rights>http://creativecommons.org/licenses/by-nc-nd/4.0/</dc:rights>
      <dc:rights>open access</dc:rights>
      <dc:rights>Attribution-NonCommercial-NoDerivatives 4.0 Internacional</dc:rights>
      <dc:publisher>IOP</dc:publisher>
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