Medical Physics · 2005 · 47 citations · 13 references
Surgical OncologyMagna‐site™ Tissue ExpanderSurgeryRadiation MedicineOncologyBrachytherapyRadiation Therapy PlanningRadiation OncologyNuclear MedicineRadiologyHealth SciencesRadiation TherapyMedical ImagingPost‐mastectomy RadiotherapyDosimetric EffectDosimetrySignificant PerturbationsDose PerturbationDose DistributionBreast CancerMedicine
It is increasingly common for radiotherapy departments to encounter high density objects in patients being planned for radiotherapy. Many cases, such as artificial hip prostheses, are well documented. In our cancer center we have recently come across a new type of implant--a McGhan Style 133 Tissue Expander--implanted in patients who have undergone a mastectomy and will in future have breast reconstruction. This type of implant contains a small rare earth magnet encased in a titanium body, which induces significant perturbations in the dose distribution. These perturbations have been measured using a p-type semiconductor diode. Attenuation of up to 30% of local dose has been observed for a single beam. However, in more realistic clinical situations using tangential parallel opposed beams, it is estimated that part of the planning target volume maybe be underdosed by approximately 10%. Comparisons have been made between measured attenuation and that calculated by a treatment planning system, which demonstrates inadequate modeling of the dose perturbation caused by the implant in this case.
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A pencil beam model for photon dose calculation
Anders Ahnesjö, M. Saxner, Avo Trepp · Medical Physics · 1992 · 323 citations
Analytical Kernels, Engineering, Photon Dose Calculation +17
Limitations of a pencil beam approach to photon dose calculations in lung tissue
Tommy Knöös, Anders Ahnesjö, Per Nilsson et al. · Physics in Medicine and Biology · 1995 · 151 citations