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      Range uncertainties in proton therapy and the role of Monte Carlo simulations.

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      Physics in medicine and biology

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          Abstract

          The main advantages of proton therapy are the reduced total energy deposited in the patient as compared to photon techniques and the finite range of the proton beam. The latter adds an additional degree of freedom to treatment planning. The range in tissue is associated with considerable uncertainties caused by imaging, patient setup, beam delivery and dose calculation. Reducing the uncertainties would allow a reduction of the treatment volume and thus allow a better utilization of the advantages of protons. This paper summarizes the role of Monte Carlo simulations when aiming at a reduction of range uncertainties in proton therapy. Differences in dose calculation when comparing Monte Carlo with analytical algorithms are analyzed as well as range uncertainties due to material constants and CT conversion. Range uncertainties due to biological effects and the role of Monte Carlo for in vivo range verification are discussed. Furthermore, the current range uncertainty recipes used at several proton therapy facilities are revisited. We conclude that a significant impact of Monte Carlo dose calculation can be expected in complex geometries where local range uncertainties due to multiple Coulomb scattering will reduce the accuracy of analytical algorithms. In these cases Monte Carlo techniques might reduce the range uncertainty by several mm.

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          Author and article information

          Journal
          Phys Med Biol
          Physics in medicine and biology
          1361-6560
          0031-9155
          Jun 07 2012
          : 57
          : 11
          Affiliations
          [1 ] Department of Radiation Oncology, Massachusetts General Hospital and Harvard Medical School, Boston, MA 02114, USA. hpaganetti@partners.org
          Article
          NIHMS377803
          10.1088/0031-9155/57/11/R99
          3374500
          22571913
          ae4fa4c1-7148-4bb3-85c8-376adb27d8c6
          History

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